Sleep and memory
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The relationship between sleep and memory has been studied since at least the early 19th century.
Memory Memory is the faculty of the mind by which data or information is encoded, stored, and retrieved when needed. It is the retention of information over time for the purpose of influencing future action. If past events could not be remembered ...
, the cognitive process of storing and retrieving past experiences, learning and recognition, is a product of brain plasticity, the structural changes within synapses that create associations between stimuli. Stimuli are encoded within milliseconds; however, the long-term maintenance of memories can take additional minutes, days, or even years to fully consolidate and become a stable memory that is accessible (more resistant to change or interference). Therefore, the formation of a specific memory occurs rapidly, but the evolution of a memory is often an ongoing process. Memory processes have been shown to be stabilized and enhanced (sped up and/or integrated) and memories better consolidated by nocturnal
sleep Sleep is a sedentary state of mind and body. It is characterized by altered consciousness, relatively inhibited sensory activity, reduced muscle activity and reduced interactions with surroundings. It is distinguished from wakefulness by a de ...
and daytime
nap A nap is a short period of sleep, typically taken during daytime hours as an adjunct to the usual nocturnal sleep period. Naps are most often taken as a response to drowsiness during waking hours. A nap is a form of biphasic or polyphasic sl ...
s. Certain sleep stages have been demonstrated as improving an individual's memory, though this is task-specific. Generally, declarative memories are believed to be enhanced by
slow-wave sleep Slow-wave sleep (SWS), often referred to as deep sleep, consists of stage three of non-rapid eye movement sleep. It usually lasts between 70 and 90 minutes and takes place during the first hours of the night. Initially, SWS consisted of both St ...
, while non-declarative memories are enhanced by rapid eye movement (REM) sleep, although there are some inconsistencies among experimental results. The effect of sleep on memory, especially as it pertains to the
human brain The human brain is the central organ (anatomy), organ of the human nervous system, and with the spinal cord makes up the central nervous system. The brain consists of the cerebrum, the brainstem and the cerebellum. It controls most of the act ...
, is an active field of research in
neurology Neurology (from el, νεῦρον (neûron), "string, nerve" and the suffix -logia, "study of") is the branch of medicine dealing with the diagnosis and treatment of all categories of conditions and disease involving the brain, the spinal ...
,
psychology Psychology is the scientific study of mind and behavior. Psychology includes the study of conscious and unconscious phenomena, including feelings and thoughts. It is an academic discipline of immense scope, crossing the boundaries between ...
, and related disciplines.


History

In 1801, David Hartley first suggested that dreaming altered the associative planetary links within the brain during rapid eye movement (REM) periods of the sleep cycle. The idea that sleep had a mentally restorative effect, sorting out and consolidating memories and ideas, was intellectually acceptable by the end of the 19th century. In ‘Peter and Wendy’,
J.M. Barrie Sir James Matthew Barrie, 1st Baronet, (; 9 May 1860 19 June 1937) was a Scottish novelist and playwright, best remembered as the creator of Peter Pan. He was born and educated in Scotland and then moved to London, where he wrote several succe ...
wrote ''‘It is the nightly custom of every good mother after her children are asleep to rummage in their minds and put things straight for next morning, repacking into their proper places the many articles that have wandered during the day....When you wake in the morning, the naughtinesses and evil passions with which you went to bed have been folded up small and placed at the bottom of your mind; and on the top, beautifully aired, are spread out your prettier thoughts, ready for you to put on.’'' The stories of Peter Pan take place in a fictional world and contain many allusions to aspects of cognitive psychology, some of which predate their formal scientific investigation. The first semi-multiple-systematic study of the connection between sleep and memory was conducted in 1924 by Jenkins and Dallenbach, for the purpose of testing Hermann Ebbinghaus' memory decay theory. Their results showed that memory retention was much better after a period of sleep compared to the same time interval spent awake. It was not until 1953, however, when sleep was delineated into rapid eye movement sleep and
non-rapid eye movement sleep Non-rapid eye movement sleep (NREM), also known as quiescent sleep, is, collectively, sleep stages 1–3, previously known as stages 1–4. Rapid eye movement sleep (REM) is not included. There are distinct electroencephalographic and other cha ...
, that studies focusing on the effect of specific sleep stages on memory were conducted. As behavioral characteristics of the effects of sleep and memory are becoming increasingly understood and supported, researchers are turning to the weakly understood neural basis of sleep and memory.


Sleep cycles

Sleep progresses in a cycle which consists of five stages. Four of these stages are collectively referred to a
''non-rapid eye movement'' (NREM)
sleep whereas the last cycle is a rapid eye movement period. A cycle takes approximately 90–110 minutes to complete. Wakefulness is found through an electroencephalogram (
EEG Electroencephalography (EEG) is a method to record an electrogram of the spontaneous electrical activity of the brain. The biosignals detected by EEG have been shown to represent the postsynaptic potentials of pyramidal neurons in the neocortex ...
) which is measured and characterized by ''
beta wave Beta waves, or beta rhythm, are a neural oscillation (brainwave) in the brain with a frequency range of between 12.5 and 30 Hz (12.5 to 30 cycles per second). Beta waves can be split into three sections: Low Beta Waves (12.5–16 Hz, " ...
s'', the highest in frequency but lowest in amplitude, and tend to move inconsistently due to the vast amount of stimuli a person encounters while awake. *Pre-sleep is the period of decreased perceptual awareness where brain activity is characterized by '' alpha waves'' which are more rhythmic, higher in amplitude and lower in frequency compared to beta waves. *Stage one is characterized by light sleep and lasts roughly 10 minutes. Brain waves gradually transition to ''
theta waves Theta waves generate the theta rhythm, a neural oscillation in the brain that underlies various aspects of cognition and behavior, including learning, memory, and spatial navigation in many animals. It can be recorded using various electrophysio ...
''. *Stage two also contains theta waves; however, random short bursts of increased frequency called ''
sleep spindles Sleep spindles are bursts of neural oscillatory activity that are generated by interplay of the thalamic reticular nucleus (TRN) and other thalamic nuclei during stage 2 NREM sleep in a frequency range of ~11 to 16 Hz (usually 12–14 Hz) ...
'' are a defining characteristic of this stage. *Stage three and four are very similar and together are considered to be "deep sleep". In these stages brain activity transitions to '' delta waves'' which are the lowest in frequency and highest in amplitude. These two stages combined are also called ''slow wave sleep'' (SWS). *Stage five, REM sleep, is one of the most interesting stages as brain wave patterns are similar to those seen in relaxed wakefulness. This is referred to as "active sleep" and is the period when most dreaming occurs. REM sleep is also thought to play a role in the cognitive development of infants and children as they spend much more of their sleep in REM periods opposed to adults. During the first half of the night, the largest portion of sleep is spent as SWS, but as the night progresses SWS stages decrease in length while REM stages increase.


Memory terms


Stabilization vs. enhancement

Stabilization of a memory is the anchoring of a memory in place, in which a weak connection is established. Stabilization of procedural memories can even occur during waking hours, suggesting that specific non-declarative tasks are enhanced in the absence of sleep. When memories are said to be enhanced, however, the connection is strengthened by rehearsal as well as connecting it to other related memories thereby making the retrieval more efficient. Whereas stabilization of non-declarative memories can be seen to occur during a wakeful state, ''enhancement'' of these sensory and motor memories has most been found to occur during nocturnal sleep.


Use-dependent processes vs. experience-dependent processes

Brain activity that occurs during sleep is assessed in two ways: Use-dependency, and Experience-dependency. Use-dependent brain activity is a result of the neuronal usage that occurred during the previous waking hours. Essentially it is neuronal regeneration, activity that occurs whether the person has learnt anything new or not. Experience-dependent brain activity is a result of a new situation, environment, or learned task or fact that has taken place in the pre-sleep period. This is the type of brain activity that denotes memory consolidation/enhancement. It is often hard to distinguish between the two in an experimental setting because the setting alone is a new environment. This new environment would be seen in the sleeping brain activity along with the newly learned task. To avoid this, most experimenters insist participants spend one day in the experimental condition before testing begins so the setting is not novel once the experiment begins. This ensures the collected data for experience-dependent brain activity is purely from the novel task.


Consolidation

Consolidation of a memory is a process that takes an initially unstable representation and encodes it in a more sturdy, effective and efficient manner. In this new state, the memory is less susceptible to interference. There are essentially three phases of
memory consolidation Memory consolidation is a category of processes that stabilize a memory trace after its initial acquisition. A memory trace is a change in the nervous system caused by memorizing something. Consolidation is distinguished into two specific processe ...
and all are thought to be facilitated by sleep or not sleep: # ''Stabilization'' is the encoding of a memory which takes only 6 milliseconds. # ''Enhancement'' is the continual process of consolidation which can occur over minutes, 7 hours, days but not longer. Post-sleep behavioural activities can be seen to show significant improvements in the absence of practice. # ''Integration'' can also take hours or years and is the process of connecting recently encoded memories into existing memory networks.


Reconsolidation

Reconsolidation of a memory involves the retrieval of an already consolidated memory (explicit or implicit), into short-term or working memory. Here it is brought into a labile state where subsequent information can interfere with what is currently in memory, therefore altering the memory. This is known as ''retroactive interference'', and is an extremely significant issue for court and eyewitness testimonies.


Pre-training vs post-training sleep deprivation

Researchers approach the study of sleep and memory from different angles. Some studies measure the effects of sleep deprivation ''after'' a novel task is taught (the subject learns the task and is sleep deprived afterwards). This is referred to as ''post-training sleep deprivation''. Conversely, other experiments have been conducted that measure the effects of sleep deprivation ''before'' a task has been taught (the subject is sleep-deprived and then learns a task). This is referred to as ''pre-training sleep deprivation''.


Offline memory processing

This is the processing of memories out of conscious awareness. For example, after someone has been reading a book, their brain continues to process the experience during other activities. This "offline" processing likewise occurs during sleep.


Methods of measuring memory


Behavioral measures

* A ''self-ordered pointing task'' is a task of memory where a participant is presented with a number of images (or words) which are arranged on a display. Several trials are presented, each with a different arrangement and containing some of the previous words or images. The task for the participant is to point to a word or image they had not previously pointed to in other trials. * In a ''recency discrimination task'' participants are shown two trials of image presentation and then a third trial containing a mixture of images from the first and second trial. Their task is to determine whether the image was from the most recent presentation or the previous one. * In a ''route retrieval task'' spatial learning occurs where a participant virtual tours a particular place (such as a town or maze). Participants are asked to virtually tour the same thing at a later time while brain imaging is used to measure activity. * A ''paired word associative task'' consists of two phases. During the first phase (acquisition), the responses of the paired-associate task are learned and become recallable. In the second phase (associative phase), the subject learns to pair each response to a separate
stimulus A stimulus is something that causes a physiological response. It may refer to: *Stimulation **Stimulus (physiology), something external that influences an activity **Stimulus (psychology), a concept in behaviorism and perception *Stimulus (economi ...
. For example, a visual cue would provide information as to what words must be recalled after the stimulus and words are removed. * In a ''mirror tracing task'' participants are asked to trace several figures as fast and as accurately as possible which they can only see in a mirror. Speed is recorded as well as how much they deviate from the original image (accuracy). * In the ''Morris water maze task'' rats are used to test their spatial learning in two kinds of conditions: spatial and nonspatial. In the spatial condition, a platform is hidden by using murky water and in the nonspatial condition, the platform is visible. The spatial condition the rat must rely on their spatial memory to find the platform whereas the nonspatial condition is used for comparison purposes. * The ''serial reaction time task'' (SRT task) is a task whereby subjects face a computer screen where several markers are displayed that are spatially related to relevant markers on their keyboard. The subjects are asked to react as fast and accurately as possible to the appearance of a stimulus below one of the markers. Subjects can be trained on the task with either explicit instructions (e.g. there are colour sequences presented which must be learned) or implicit ones (e.g. the experimenter does not mention colour sequences, thus leaving the subjects to believe that they are taking place in a speed test). When this task is used in sleep studies, after a time delay, subjects are tested for retention. * In the ''reach-to-grasp task'' rodents learned a skilled forelimb task. Sleep improved movement speed with preservation of accuracy. These offline improvements were linked to both replay of task-related ensembles during non-rapid eye movement (NREM) sleep and temporal shifts that more tightly bound motor cortical ensembles to movements. * In a ''neuroprosthetic task'' rodents trained to perform a simple brain–machine interface task in which the activity of a set of motor cortical units was used to control a mechanical arm attached to a feeding spout. After successful learning, task-related units specifically experienced increased locking and coherency to slow-wave activity (SWA) during sleep. The time spent in SWA predicted the performance gains upon awakening. * In a ''block tapping task'' participants are asked to type a sequence of five numbers with their dominant or non-dominant hand (specified in experiment), for an allotted period of time, followed by a rest period. A number of these trials occur and the computer records the number of sequences completed to assess speed and the error rate to assess accuracy. * A ''finger tapping test'' is commonly used when a pure motor task is needed. A finger tapping test requires subjects to continuously press four keys (typically numerical keys) on a keypad with their nondominant hand in a sequence, such as 4-3-1-2-4, for a given amount of time. Testing is done by determining the number of errors made.


Neural imaging measures

Neuroimaging can be classified into two categories, both used in varying situations depending on what type of information is needed. Structural imaging deals predominately with the structure of the brain ( computed tomography) while functional imaging deals more heavily with metabolic processes in regards to anatomical functioning ( positron emission tomography, functional magnetic resonance imaging). In recent years, the relationship between sleep and memory processes had been aided by the development of such neuroimaging techniques. Positron emission tomography (PET) is used in viewing a functional processes of the brain (or other body parts). A Positron-emitting radionuclide is injected into the bloodstream and emits
gamma rays A gamma ray, also known as gamma radiation (symbol γ or \gamma), is a penetrating form of electromagnetic radiation arising from the radioactive decay of atomic nuclei. It consists of the shortest wavelength electromagnetic waves, typically ...
which are detected by an imaging scanner. Computer analysis then allows for a 3-dimensional reconstruction of the brain region or body part of interest. Functional magnetic resonance imaging (fMRI) is a type of brain imaging that measures the change of oxygen in the blood due to the activity of neurons. The resulting data can be visualized as a picture of the brain with colored representations of activation.


Molecular measures

Although this may be seen as similar to neuroimaging techniques, molecular measures help to enhance areas of activation that would otherwise be indecipherable to neuroimaging. One such technique that aids in both the temporal and visual resolution of fMRI is the
blood-oxygen-level dependent Blood-oxygen-level-dependent imaging, or BOLD-contrast imaging, is a method used in functional magnetic resonance imaging (fMRI) to observe different areas of the brain or other organs, which are found to be active at any given time. Theory N ...
(BOLD) response. Changes in the BOLD response can be seen when there is differing levels of activation in suspected areas of functioning. Energy is supplied to the brain in the form
glucose Glucose is a simple sugar with the molecular formula . Glucose is overall the most abundant monosaccharide, a subcategory of carbohydrates. Glucose is mainly made by plants and most algae during photosynthesis from water and carbon dioxide, u ...
and
oxygen Oxygen is the chemical element with the symbol O and atomic number 8. It is a member of the chalcogen group in the periodic table, a highly reactive nonmetal, and an oxidizing agent that readily forms oxides with most elements as ...
(which is transferred by
hemoglobin Hemoglobin (haemoglobin BrE) (from the Greek word αἷμα, ''haîma'' 'blood' + Latin ''globus'' 'ball, sphere' + ''-in'') (), abbreviated Hb or Hgb, is the iron-containing oxygen-transport metalloprotein present in red blood cells (erythrocyt ...
). The blood supply is consistently regulated so that areas of activation receive higher amounts of energy compared to areas that are less activated. In positron emission tomography, the use of
radionuclides A radionuclide (radioactive nuclide, radioisotope or radioactive isotope) is a nuclide that has excess nuclear energy, making it unstable. This excess energy can be used in one of three ways: emitted from the nucleus as gamma radiation; transferr ...
(
isotopes Isotopes are two or more types of atoms that have the same atomic number (number of protons in their nuclei) and position in the periodic table (and hence belong to the same chemical element), and that differ in nucleon numbers (mass numbers) ...
with short
half lives Half-life (symbol ) is the time required for a quantity (of substance) to reduce to half of its initial value. The term is commonly used in nuclear physics to describe how quickly unstable atoms undergo radioactive decay or how long stable ato ...
) facilitates visual resolution. These radionuclides are attached to glucose,
water Water (chemical formula ) is an Inorganic compound, inorganic, transparent, tasteless, odorless, and Color of water, nearly colorless chemical substance, which is the main constituent of Earth's hydrosphere and the fluids of all known living ...
and
ammonia Ammonia is an inorganic compound of nitrogen and hydrogen with the formula . A stable binary hydride, and the simplest pnictogen hydride, ammonia is a colourless gas with a distinct pungent smell. Biologically, it is a common nitrogenous wa ...
so that easy absorption into the activated brain areas is accomplished. Once these
radioactive tracer A radioactive tracer, radiotracer, or radioactive label is a chemical compound in which one or more atoms have been replaced by a radionuclide so by virtue of its radioactive decay it can be used to explore the mechanism of chemical reactions by ...
s are injected into the
bloodstream The blood circulatory system is a system of organs that includes the heart, blood vessels, and blood which is circulated throughout the entire body of a human or other vertebrate. It includes the cardiovascular system, or vascular system, tha ...
, the efficiency and location of chemical processes can be observed using PET.


Methods of measuring sleep


Electrophysiological measures

The main method of measuring sleep in humans is
polysomnography Polysomnography (PSG), a type of sleep study, is a multi-parameter study of sleep and a diagnostic tool in sleep medicine. The test result is called a polysomnogram, also abbreviated PSG. The name is derived from Greek and Latin roots: the Gre ...
(PSG). For this method, participants often must come into a lab where researchers can use PSG to measure things such as total sleep time, sleep efficiency, wake after sleep onset, and sleep fragmentation. PSG can monitor various body functions including brain activity (electroencephalography), eye movement (electrooculography), muscle movement (electromyography), and heart rhythm (electrocardiography). * '' Electroencephalography'' (EEG) is a procedure that records electrical activity along the scalp. This procedure cannot record activity from individual neurons, but instead measures the overall average electrical activity in the brain. * ''
Electrooculography Electrooculography (EOG) is a technique for measuring the corneo-retinal standing potential that exists between the front and the back of the human eye. The resulting signal is called the electrooculogram. Primary applications are in ophthalmol ...
'' (EOG) measures the difference in electrical potential between the front and the back of the eye. This does not measure a response to individual visual stimuli, but instead measures general eye movement. * '' Electromyography'' (EMG) is used to records the electrical activity of skeletal muscles. A device called an electromyograph measures the electrical potential of muscle cells to monitor muscle movement. * '' Electrocardiography'' (ECG or EKG) measures the electrical depolarization of the heart muscles using various electrodes placed near the chest and limbs. This measure of depolarization can be used to monitor heart rhythm.


Behavioural measures

Actigraphy is a common and minimally invasive way to measure sleep architecture. Actigraphy has only one method of recording, movement. This movement can be analyzed using different actigraphic programs. As such, an actigraph can often be worn similarly to a watch, or around the waist as a belt. Because it is minimally invasive and relatively inexpensive, this method allows for recordings outside of a lab setting and for many days at a time. But, actigraphy often over estimates sleep time (de Souza 2003 and Kanady 2011).


Competing theories

Most studies point to the specific deficits in declarative memories that form pre or post REM sleep deprivation. Conversely, deficits in non-declarative memory occur pre or post NREM sleep deprivation. This is the stage specific enhancement theory. There is also a proposed dual-step memory hypothesis suggesting that optimal learning occurs when the memory trace is initially processed in SWS and then REM sleep. Support for this is shown in many experiments where memory improvement is greater with either SWS or REM sleep compared to sleep deprivation, but memory is even more accurate when the sleep period contains both SWS and REM sleep.


Declarative memory

Declarative memory Explicit memory (or declarative memory) is one of the two main types of long-term human memory, the other of which is implicit memory. Explicit memory is the conscious, intentional recollection of factual information, previous experiences, and c ...
is the memory for conscious events. There are two types of declarative memory: episodic and semantic. Episodic memory is for remembering experiences or personal facts whereas semantic memory is remembering specific facts. Declarative memory is typically considered to be an
explicit memory Explicit memory (or declarative memory) is one of the two main types of long-term human memory, the other of which is implicit memory. Explicit memory is the conscious, intentional recollection of factual information, previous experiences, and con ...
because the individual must consciously try to remember it.


Temporal memory

Temporal memory consists of three main categories, although they are still debated by psychologists and neurobiologists; the categories are immediate memory, short-term and long-term memory. Immediate memory is when a memory is recalled based on recently presented information. Short-term memory is what is used when retaining information that had been presented within seconds or minutes prior. A type of short-term memory is known as working memory, which is the ability to retain information that is necessary to carry out sequential actions. Long-term memory is the retention of information for longer periods of time, such as days, weeks or even a lifetime. In a study, participants were placed into four groups: two control groups given either
caffeine Caffeine is a central nervous system (CNS) stimulant of the methylxanthine class. It is mainly used recreationally as a cognitive enhancer, increasing alertness and attentional performance. Caffeine acts by blocking binding of adenosine to ...
or a
placebo A placebo ( ) is a substance or treatment which is designed to have no therapeutic value. Common placebos include inert tablets (like sugar pills), inert injections (like saline), sham surgery, and other procedures. In general, placebos can af ...
, and two groups that were
sleep deprived Sleep deprivation, also known as sleep insufficiency or sleeplessness, is the condition of not having adequate duration and/or quality of sleep to support decent alertness, performance, and health. It can be either chronic or acute and may vary ...
for 36 hours, given either caffeine or a placebo. The task used to measure temporal memory consisted of discriminating between recent and less recent face presentations. A set of twelve unfamiliar faces were presented sequentially every 10 seconds. A self-ordered pointing task was used afterwards for 5 minutes to prevent rehearsal and to keep tired participants occupied. This required them to mark any new items seen (either nouns or abstract shapes) presented on 12 sheets. A second set was presented, followed by another self-ordered pointing task, and then a random sequence of 48 faces either containing previously presented faces or new ones were shown to the participant. They were asked if they recognized the faces and whether they were from the first or second set. Results indicate that sleep deprivation does not significantly affect recognition of faces, but does produce a significant impairment of temporal memory (discriminating which face belonged to which set). Caffeine was found to have a greater effect on the sleep deprived group as compared to the placebo group deprived of sleep, but still performed worse than both control groups. Sleep deprivation was also found to increase beliefs of being correct, especially if the participants were wrong. Brain imaging studies of those sleep deprived found that the greatest reduction in
metabolic rate Metabolism (, from el, μεταβολή ''metabolē'', "change") is the set of life-sustaining chemical reactions in organisms. The three main functions of metabolism are: the conversion of the energy in food to energy available to run ce ...
is in the
prefrontal cortex In mammalian brain anatomy, the prefrontal cortex (PFC) covers the front part of the frontal lobe of the cerebral cortex. The PFC contains the Brodmann areas BA8, BA9, BA10, BA11, BA12, BA13, BA14, BA24, BA25, BA32, BA44, BA45, BA46 ...
.


Verbal learning

A blood-oxygen-level dependent (BOLD)
fMRI Functional magnetic resonance imaging or functional MRI (fMRI) measures brain activity by detecting changes associated with blood flow. This technique relies on the fact that cerebral blood flow and neuronal activation are coupled. When an area ...
was used in a study by Drummond et al. to measure the brain's response to verbal learning following sleep deprivation. An fMRI recorded brain activity during a verbal learning task of participants either having a normal night of sleep or those deprived of 34.7 (± 1.2) hours of sleep. The task alternated between a baseline condition of determining whether nouns were upper or lower case, and an experimental condition of memorizing a list of nouns. The results of the study indicate that performance is significantly worse on free recall of the list of nouns when sleep deprived (an average of 2.8 ± 2 words) compared to having a normal night of sleep (4.7 ± 4 words). In terms of brain regions activated, the left
prefrontal cortex In mammalian brain anatomy, the prefrontal cortex (PFC) covers the front part of the frontal lobe of the cerebral cortex. The PFC contains the Brodmann areas BA8, BA9, BA10, BA11, BA12, BA13, BA14, BA24, BA25, BA32, BA44, BA45, BA46 ...
,
premotor cortex The premotor cortex is an area of the motor cortex lying within the frontal lobe of the brain just anterior to the primary motor cortex. It occupies part of Brodmann's area 6. It has been studied mainly in primates, including monkeys and humans ...
, and
temporal lobe The temporal lobe is one of the four major lobes of the cerebral cortex in the brain of mammals. The temporal lobe is located beneath the lateral fissure on both cerebral hemispheres of the mammalian brain. The temporal lobe is involved in pro ...
s were found to be activated during the task in the rested state, and discrete regions of the prefrontal cortex were even more activated during the task in the sleep deprived state. As well, the bilateral
parietal lobe The parietal lobe is one of the four major lobes of the cerebral cortex in the brain of mammals. The parietal lobe is positioned above the temporal lobe and behind the frontal lobe and central sulcus. The parietal lobe integrates sensory informa ...
, left
middle frontal gyrus The middle frontal gyrus makes up about one-third of the frontal lobe of the human brain. (A ''gyrus'' is one of the prominent "bumps" or "ridges" on the surface of the human brain.) The middle frontal gyrus, like the inferior frontal gyrus an ...
, and right inferior frontal gyrus were found to be activated for those sleep deprived. The implication of these findings are that the brain can initially compensate for the effects of sleep deprivation while maintaining partially intact performance, which declines with an increasing time-on-task. This initial compensation may be found in the bilateral regions of both frontal and parietal lobes and the activation of the prefrontal cortex is significantly correlated with sleepiness.


Cognitive performance

Cerebral activation during performance on three cognitive tasks (verbal learning, arithmetic, and divided attention) were compared after both normal sleep and 35 hours of total sleep deprivation (TSD) in a study by Drummond and Brown. Use of fMRI measured these differences in the brain. In the verbal learning task,
fMRI Functional magnetic resonance imaging or functional MRI (fMRI) measures brain activity by detecting changes associated with blood flow. This technique relies on the fact that cerebral blood flow and neuronal activation are coupled. When an area ...
indicated the regions involved in both verbal learning and memorization. The results found that both TSD and a normal night of sleep showed a significant response in the prefrontal cortex, and following TSD displayed a response of additional areas which included other prefrontal areas, bilateral
inferior parietal lobule The inferior parietal lobule (subparietal district) lies below the horizontal portion of the intraparietal sulcus, and behind the lower part of the postcentral sulcus. Also known as Geschwind's territory after Norman Geschwind, an American neur ...
and superior
parietal lobes The parietal lobe is one of the four major lobes of the cerebral cortex in the brain of mammals. The parietal lobe is positioned above the temporal lobe and behind the frontal lobe and central sulcus. The parietal lobe integrates sensory informa ...
. Increases in sleepiness also correlated with activation of two
ventral Standard anatomical terms of location are used to unambiguously describe the anatomy of animals, including humans. The terms, typically derived from Latin or Greek roots, describe something in its standard anatomical position. This position prov ...
prefrontal regions and a correlation between a greater activation in bilateral
parietal lobes The parietal lobe is one of the four major lobes of the cerebral cortex in the brain of mammals. The parietal lobe is positioned above the temporal lobe and behind the frontal lobe and central sulcus. The parietal lobe integrates sensory informa ...
(which include language areas) and lower levels of impairment on free recall were also found following TSD. In the arithmetic task, normal sleep showed the expected activation in the bilateral prefrontal and parietal
working memory Working memory is a cognitive system with a limited capacity that can hold information temporarily. It is important for reasoning and the guidance of decision-making and behavior. Working memory is often used synonymously with short-term memory, ...
regions, but following TSD only showed activation in the left superior parietal lobe and the left
premotor cortex The premotor cortex is an area of the motor cortex lying within the frontal lobe of the brain just anterior to the primary motor cortex. It occupies part of Brodmann's area 6. It has been studied mainly in primates, including monkeys and humans ...
in response, with no new areas to compensate (as was found in verbal learning). Increased sleepiness was also correlated with activation in a ventral prefrontal region, but only one region. The divided attention task combined both verbal learning and the arithmetic task. fMRI indicated that cerebral response after TSD is similar to that of the verbal learning task (specifically the right prefrontal cortex, bilateral parietal lobes, and
cingulate gyrus The cingulate cortex is a part of the brain situated in the medial aspect of the cerebral cortex. The cingulate cortex includes the entire cingulate gyrus, which lies immediately above the corpus callosum, and the continuation of this in the ...
showing the strongest response). The implication of this finding is that additional brain regions activated after both verbal learning and divided attention tasks following TSD represent a cerebral compensatory response to lacking sleep. For example, there is a decline in response of the left temporal lobes during both tasks which is involved in different learning tasks during a rested state, but involvement of the left inferior parietal lobe in short-term verbal memory storage following TSD suggests that this region might compensate. No new areas for the arithmetic task may suggest that it relies heavily on working memory so compensation is not possible, in comparison to tasks such as verbal learning which rely less on working memory.


Slow wave sleep (SWS)

Slow wave sleep Slow-wave sleep (SWS), often referred to as deep sleep, consists of stage three of non-rapid eye movement sleep. It usually lasts between 70 and 90 minutes and takes place during the first hours of the night. Initially, SWS consisted of both S ...
(SWS) has often been associated with successful performance in declarative memory recall tasks. For example, declarative and procedural memory recall tasks applied over early and late nocturnal sleep, as well as wakefulness controlled conditions, have been shown that declarative memory improves more during early sleep (dominated by SWS) while procedural memory during late sleep (dominated by REM sleep). Based on targeted memory reactivation (TMR) that use associated memory cues for triggering memory traces during sleep, recent studies have been reassuring the importance of nocturnal SWS for the formation of persistent memories in neocortical networks, as well as highlighting the possibility of increasing people's memory performance at declarative recalls. Increased slow activity and sleep time spent in SWS have been also related to better performance in
implicit learning Implicit learning is the learning of complex information in an unintentional manner, without awareness of what has been learned. According to Frensch and Rünger (2003) the general definition of implicit learning is still subject to some controver ...
.


Macroscopic brain systems

The most prominent population pattern in the hippocampus during nREM is called sharp wave ripples (SPW-R). SPW-Rs are the most synchronous neuronal patterns in the mammalian brain. As many as 15-30 percent of neurons in 50-200 ms fire synchronously in the CA3-CA2-CA1, subicular complex and entorhinal cortex during SWP-R (as opposed to ~1 percent during active waking and REM). Neurons within SPW-R are sequentially organized and many of the fast sequences are related to the order of neuronal firing during the pre-sleep experience of the animal. For example, when the rat explores a maze, place cell sequences in the different arms of the maze are replayed either in a forward (as during the experience itself) or reverse order, but compressed in time several-fold. SPW-R are temporally linked to both sleep spindles and slow oscillations of the neocortex. Interfering with SPW-Rs or its coupling with neocortical slow oscillations results in memory impairment, which can be as severe as surgically damaging the hippocampus and/or associated structures. SPW-R is therefore the most prominent physiological biomarker of episodic (i.e., hippocampus-dependent) memory consolidation (Buzsaki 2015).


=Neural forebrain reverberation correlation

= Researchers used rats in order to investigate the effects of novel tactile objects on the long-term evolution of the major rodent forebrain loops essential in species-specific behaviours, including such structures as the
hippocampus The hippocampus (via Latin from Greek , ' seahorse') is a major component of the brain of humans and other vertebrates. Humans and other mammals have two hippocampi, one in each side of the brain. The hippocampus is part of the limbic system, ...
,
putamen The putamen (; from Latin, meaning "nutshell") is a round structure located at the base of the forebrain (telencephalon). The putamen and caudate nucleus together form the dorsal striatum. It is also one of the structures that compose the basal ...
, neocortex and the
thalamus The thalamus (from Greek θάλαμος, "chamber") is a large mass of gray matter located in the dorsal part of the diencephalon (a division of the forebrain). Nerve fibers project out of the thalamus to the cerebral cortex in all directions, ...
. The rats were monitored but not bothered for 48–96 hours, allowing normal wake-sleep cycles to occur. At some point four novel tactile objects were placed in the four corners of the rat's cage. They were all very different from one another and they were there for a total of one hour. The brain activity during this hour was used as a baseline or template to compare. Data analysis implied that the neural assemblies during SWS correlated significantly more with templates than during waking hours or REM sleep. As well, these post-learning, post-SWS reverberations lasted 48 hours, much longer than the duration of novel object learning (one hour), indicating long term potentiation. Further analysis on a neuron to neuron base showed no subset of neurons (brain structure) to be responsible for the reverberations or anti-reverberations (patterns of activity significantly more dissimilar than novel stimulation templates). Another difference noticed was the highest correlation peaks in SWS corresponded with the lowest rate of neuron firing in the forebrain, opposite that of REM sleep and waking where rate of firing is the highest. It is hypothesized that this is due to interference from other incoming stimuli during waking periods. In SWS there is no incoming stimuli, so the novel experience can be replayed, without interruption.


=Neural hippocampal reverberation correlations

= A study by Peigneux ''et al.'', (2004) noted that the firing sequences in the hippocampal ensembles during spatial learning are also active during sleep, which shows that post training sleep has a role in processing spatial memories. This study was done to prove that the same hippocampal areas are activated in humans during route learning in a virtual town, and are reactivated during subsequent
slow wave sleep Slow-wave sleep (SWS), often referred to as deep sleep, consists of stage three of non-rapid eye movement sleep. It usually lasts between 70 and 90 minutes and takes place during the first hours of the night. Initially, SWS consisted of both S ...
(SWS). In order to monitor this activation, experimenters used
PET scans Positron emission tomography (PET) is a functional imaging technique that uses radioactive substances known as radiotracers to visualize and measure changes in metabolic processes, and in other physiological activities including blood flow, r ...
and
fMRI Functional magnetic resonance imaging or functional MRI (fMRI) measures brain activity by detecting changes associated with blood flow. This technique relies on the fact that cerebral blood flow and neuronal activation are coupled. When an area ...
to use cerebral blood flow as a marker of synaptic activity. The finding noted that the amount of hippocampal activation during slow-wave sleep positively correlated to the improvement on the virtual tour task the following day, which indicates that hippocampal activity during sleep correlates with the improvement in memory performance. These findings prove that learning-dependent modulation in hippocampal activity while sleeping shows processing of the previously learned episodic and spatial memory traces. This modulation of the hippocampus leads to plastic changes in the brain and ultimately an improvement in performance. The results of this study showed that spatial memory traces are processed in humans while they are in
NREM sleep Non-rapid eye movement sleep (NREM), also known as quiescent sleep, is, collectively, sleep stages 1–3, previously known as stages 1–4. Rapid eye movement sleep (REM) is not included. There are distinct electroencephalographic and other cha ...
. It showed a reaction of the hippocampal formation during SWS, after a declarative spatial memory task. Experimenters also found, that in humans, there is experience-dependent modulation of activity during NREM sleep in the hippocampal regions, but not during REM sleep after learning. The evidence from this study was substantial to its hypothesis that the information learned while awake is altered, and strengthened while humans are sleeping. Based on the active system consolidation hypothesis, repeated reactivations of newly encoded information in hippocampus during slow oscillations in NREM sleep mediate the stabilization and gradual integration of declarative memory with pre-existing knowledge networks on the cortical level. It assumes the hippocampus might hold information only temporarily and in fast-learning rate, whereas the neocortex is related to long-term storage and slow-learning rate. This dialogue between hippocampus and neocortex occurs in parallel with hippocampal sharp-wave ripples and thalamo-cortical spindles, synchrony that drives the formation of spindle-ripple event which seems to be a prerequisite for the formation of long-term memories.


Decreases in acetylcholine

In this study, two groups of participants took part in a two-night counterbalanced study. Two tasks were learned by all participants between 10:00-10:30pm. The declarative task was a paired-associate word list of 40 German semantically related word pairs. The non-declarative task was a mirror-tracing task. At 11:00pm all participants were put on a two-hour infusion of either
physostigmine Physostigmine (also known as eserine from ''éséré'', the West African name for the Calabar bean) is a highly toxic parasympathomimetic alkaloid, specifically, a reversible cholinesterase inhibitor. It occurs naturally in the Calabar bean a ...
or a
placebo A placebo ( ) is a substance or treatment which is designed to have no therapeutic value. Common placebos include inert tablets (like sugar pills), inert injections (like saline), sham surgery, and other procedures. In general, placebos can af ...
. Physostigmine is an
acetylcholinesterase inhibitor Acetylcholinesterase inhibitors (AChEIs) also often called cholinesterase inhibitors, inhibit the enzyme acetylcholinesterase from breaking down the neurotransmitter acetylcholine into choline and acetate, thereby increasing both the level and ...
; it is a drug that inhibits the breakdown of the inhibitory neurotransmitter acetylcholine, thereby allowing it to remain active longer in the synapses. The sleep group was put to bed while the other group stayed awake. Testing of both tasks took place at 2:45am, 30 minutes after the sleep group had been woken up; a sleep which had been rich in
slow-wave sleep Slow-wave sleep (SWS), often referred to as deep sleep, consists of stage three of non-rapid eye movement sleep. It usually lasts between 70 and 90 minutes and takes place during the first hours of the night. Initially, SWS consisted of both St ...
(SWS). Results showed that the increased ACh negatively affected recall memory (declarative task), in the sleep condition compared to participants given the placebo. Specifically, recall after sleep for the placebo group showed an increase of 5.2 ± 0.8 words compared to an increase of only 2.1 ± 0.6 words when participants were given the acetylcholinesterase inhibitor. Conversely, neither speed nor accuracy declined in the non-declarative mirror task when participants were given physostigmine, and neither task performance was affected in the wake groups when physostigmine was administered. This suggests that the purpose of ACh suppression during SWS allows for hippocampus-dependent declarative memory consolidation; high levels of ACh during SWS blocks memory replay on a hippocampal level. *Note: There was no correlation between the amount of SWS and level of recall. Memory consolidation can be disrupted, however, if large parts of SWS are missing.


Increases in sleep spindles

Sleep spindles Sleep spindles are bursts of neural oscillatory activity that are generated by interplay of the thalamic reticular nucleus (TRN) and other thalamic nuclei during stage 2 NREM sleep in a frequency range of ~11 to 16 Hz (usually 12–14 Hz) ...
are short and intense bursts of neurons firing in sync, occurring in the thalamo-cortical networks. These peak late in the night and are defining characteristics of stage two sleep. Sleep spindles are thought to aid in information consolidation during sleep and have been shown to increase after training on a motor task. A study using 49 rats indicated the increase of sleep spindles during
slow-wave sleep Slow-wave sleep (SWS), often referred to as deep sleep, consists of stage three of non-rapid eye movement sleep. It usually lasts between 70 and 90 minutes and takes place during the first hours of the night. Initially, SWS consisted of both St ...
following learning. It gave evidence to the increase of spindle frequency during non-REM sleep following paired associate of motor-skill learning tasks. Using an
EEG Electroencephalography (EEG) is a method to record an electrogram of the spontaneous electrical activity of the brain. The biosignals detected by EEG have been shown to represent the postsynaptic potentials of pyramidal neurons in the neocortex ...
, sleep spindles were detected and shown to be present only during slow-wave sleep. Beginning with a preliminary study, rats underwent six hours of monitored sleep, after a period of learning. Results showed that during the first hour following learning, there was the most evident effect on learning-modulated sleep spindle density. However, this increase in spindle density was not dependent on the training condition. In other words, there was an increase in spindles regardless of how the rats were trained. EEG patterns showed a significant difference in the density of sleep spindles compared to the density of a control group of rats, who did not undergo any training before their sleep spindles were measured. This effect of increased spindle density only lasted for the first hour into sleep following training, and then disappeared within the second hour into sleep.


Reward learning and memory

In a study by Fischer and Born, 2009, previous knowledge of monetary reward and post-training sleep are proven to be significant predictors of overall finger sequence tapping performance. Subjects were presented with two different finger sequence tasks that would have to be replicated at a later time. The subjects were told that there would be a reward offered for improvement upon a specific finger tapping sequence task. A control group was not given any knowledge of a reward. The subjects were separated further by allowing a sleep period between initial training and final testing for one group while another group faced a wake retention interval. It was concluded that the group that received both information about reward as well as being able to sleep displayed the highest increase in performance on both finger tapping sequences. Knowledge of reward without sleep and sleep without knowledge of reward were both significant contributors to improved performance. In all cases sleep was determined to have an advantageous effect on overall performance when compared to groups that underwent a twelve-hour wake retention period.


Non-declarative memory

Non-declarative memory In psychology, implicit memory is one of the two main types of long-term human memory. It is acquired and used unconsciously, and can affect thoughts and behaviours. One of its most common forms is procedural memory, which allows people to perf ...
is memory gained from previous experiences that is unconsciously applied to everyday scenarios. Non-declarative memory is essential for the performance of learned skills and habits, for example, running or cooking a favourite meal. There are three types of non-declarative memories:
implicit memory In psychology, implicit memory is one of the two main types of long-term human memory. It is acquired and used unconsciously, and can affect thoughts and behaviours. One of its most common forms is procedural memory, which allows people to perfo ...
(unconscious memory,
priming Priming may refer to: * Priming (agriculture), a form of seed planting preparation, in which seeds are soaked before planting * Priming (immunology), a process occurring when a specific antigen is presented to naive lymphocytes causing them to d ...
), instrumental memory (
classical conditioning Classical conditioning (also known as Pavlovian or respondent conditioning) is a behavioral procedure in which a biologically potent stimulus (e.g. food) is paired with a previously neutral stimulus (e.g. a triangle). It also refers to the learni ...
), and
procedural memory Procedural memory is a type of implicit memory ( unconscious, long-term memory) which aids the performance of particular types of tasks without conscious awareness of these previous experiences. Procedural memory guides the processes we perform ...
(automatic skill memory).


Sleep deprivation


ERK phosphorylation

Extracellular signal-related kinases, also known as classical MAP kinase, are a group of protein kinases located in neurons. These proteins are activated or deactivated by phosphorylation (adding of a phosphate group using ATP), in response to neurotransmitters and growth factors. This can result in subsequent protein to protein interactions and signal transductions (neurotransmitters or hormones transmit to cells), which ultimately controls all cellular processes including gene transcription and cell cycles (important in learning and memory). A study tested four groups of rats in the Morris Water Maze, two groups in the spatial task (hidden platform) and two groups in the non-spatial task (visible platform.) The effects of six hours of total sleep deprivation (TSD) were assessed for the experimental group (one spatial group, one non-spatial group) in both tasks. Six hours after the TSD period (or sleep period for controls), the groups of rats were trained on either task then tested 24 hours later. In addition, the levels of total ERK phosphorylation (ERK 1 and ERK 2), protein phosphate 1 (PP1), and MAPK phosphatase 2 (latter two both involved in dephosphorylation) were assessed by decapitating four other groups of mice, (two sleep deprived and two non-sleep deprived), and removing their hippocampuses after the six hours of TSD, or two hours after TSD (eight hours total). Results showed that TSD did not impair learning of the spatial task, but it did impair memory. With regards to the non-spatial task, learning again was no different in the TSD; however, memory in the TSD group was actually slightly better, although not quite significantly. Analysis of the hippocampus showed that TSD significantly decreased the levels of total ERK phosphorylation by about 30%. TSD did not affect proteins in the cortex which indicates that the decreases in ERK levels were due to impaired signal transduction in the hippocampus. In addition, neither PP1 or MAPK phosphatase 2 levels were increased suggesting that the decreases in ERK were not due to dephosphorylation but instead a result of TSD. Therefore, it is proposed that TSD has aversive effects on the cellular processes (ERK: gene transcription etc.), underlying sleep-dependent memory plasticity.


REM sleep

REM sleep is known for its vivid creations and similarity to the bioelectric outputs of a waking person. This stage of sleep is characterized by muscle atonia, fast but low voltage
EEG Electroencephalography (EEG) is a method to record an electrogram of the spontaneous electrical activity of the brain. The biosignals detected by EEG have been shown to represent the postsynaptic potentials of pyramidal neurons in the neocortex ...
and, as the name suggests, rapid eye movement. It is difficult to attribute memory gains to a single stage of sleep when it may be the entire
sleep cycle The sleep cycle is an oscillation between the slow-wave and REM (paradoxical) phases of sleep. It is sometimes called the ultradian sleep cycle, sleep–dream cycle, or REM-NREM cycle, to distinguish it from the circadian alternation between sle ...
that is responsible for
memory consolidation Memory consolidation is a category of processes that stabilize a memory trace after its initial acquisition. A memory trace is a change in the nervous system caused by memorizing something. Consolidation is distinguished into two specific processe ...
. Recent research conducted by Datta et al. used an avoidance task followed by a post-training REM sleep period to examine changes in
P waves A P wave (primary wave or pressure wave) is one of the two main types of elastic Body wave (seismology), body waves, called seismic waves in seismology. P waves travel faster than other seismic waves and hence are the first signal from an eart ...
affecting reprocessing of recently acquired stimuli. It was found that not only were the P waves increased during post-training sleep but also the density of the waves. These findings may imply that P waves during REM sleep may help to activate critical forebrain and cortical structures dealing with memory consolidation. In a Hennevin et al. study, 1989, the mesencephalic reticular formation (MRF) was given light
electrical stimulation Functional electrical stimulation (FES) is a technique that uses low-energy electrical pulses to artificially generate body movements in individuals who have been paralyzed due to injury to the central nervous system. More specifically, FES can ...
, during REM sleep, which is known to have an advantageous effect for learning when applied after training. The rats in the experiment were trained to run a maze in search of a food reward. One group of rats was given non-awakening MRF electrical stimulations after each of their maze trials compared to a control group which did not receive any electrical stimulation. It was noticed that the stimulated rats performed significantly better in respect to error reduction. These findings imply that dynamic memory processes occur both during training as well as during post-training sleep. Another study by Hennevin et al. (1998) conditioned rats to fear a noise that is associated with a subsequent foot shock. The interesting part of the experiment is that fear responding to the noise (measured in the
amygdala The amygdala (; plural: amygdalae or amygdalas; also '; Latin from Greek, , ', 'almond', 'tonsil') is one of two almond-shaped clusters of nuclei located deep and medially within the temporal lobes of the brain's cerebrum in complex verte ...
) was observed when the noise was presented during REM sleep. This was compared to a group of pseudo-conditioned rats who did not display the same amygdalar activation during post-training sleep. This would suggest that neural responding to previously salient stimuli is maintained even during REM sleep. There is no shortage of research conducted on the effects that REM sleep has on the working brain, but consistency in the findings is what plagues recent research. There is no guarantee as to what functions REM sleep may perform for our bodies and brains, but modern research is always expanding and assimilating new ideas to further our understanding of such processes.


PGO waves

In animals, the appearance of ponto-geniculo-occipital waves (
PGO waves Ponto-geniculo-occipital waves or PGO waves are distinctive wave forms of propagating activity between three key brain regions: the pons, lateral geniculate nucleus, and occipital lobe; specifically, they are phasic field potentials. These waves c ...
) is related to that of the bioelectric outputs of rapid eye movements. These waves are most clearly seen during the transition from non-REM to REM sleep. Although these phasic waves are observed in many portions of the animal brain, they are most noticeable in the pons, lateral geniculate bodies, and the occipital cortex. Peigneux et al., 2006, reported that the
lateral geniculate nucleus In neuroanatomy, the lateral geniculate nucleus (LGN; also called the lateral geniculate body or lateral geniculate complex) is a structure in the thalamus and a key component of the mammalian visual pathway. It is a small, ovoid, ventral projec ...
and
occipital cortex The occipital lobe is one of the four major lobes of the cerebral cortex in the brain of mammals. The name derives from its position at the back of the head, from the Latin ''ob'', "behind", and ''caput'', "head". The occipital lobe is the vi ...
display higher levels of activity during REM sleep than during wakefulness. This would add to the theory that activation in these areas is similar to PGO wave activation in animals. Pontine waves are commonly seen in animals as a mechanism to help facilitate learning and
memory consolidation Memory consolidation is a category of processes that stabilize a memory trace after its initial acquisition. A memory trace is a change in the nervous system caused by memorizing something. Consolidation is distinguished into two specific processe ...
. An improvement on task performance was seen to be a result of increased P waves between REM sleep sessions. In a study using post learning REM sleep deprivation the effects of stimulating the
P wave A P wave (primary wave or pressure wave) is one of the two main types of elastic body waves, called seismic waves in seismology. P waves travel faster than other seismic waves and hence are the first signal from an earthquake to arrive at any ...
generator (located in the
pontine tegmentum Pontine may refer to: * Having to do with the pons, a structure located in the brain stem (from ''pons'', "bridge") * Pontine Marshes, a region of Italy near Rome * Pontine Islands The Pontine Islands (, also ; it, Isole Ponziane ) are an ar ...
) of a rat were observed. Two groups of rats underwent an avoidance learning task and then allowed a sleep period while another group of rats were deprived sleep. When comparing the two groups the sleep deprived rats showed a significant deficit in learning from having not undergone REM sleep. In another rat group, the P wave generator was stimulated using a
carbachol Carbachol, also known as carbamylcholine and sold under the brand name Miostat among others, is a cholinomimetic drug that binds and activates acetylcholine receptors. Thus it is classified as a cholinergic agonist. It is primarily used for va ...
injection and the rats then underwent a sleep deprivation stage. When these rats were again tested on their learning it was shown that activation of the P wave generator during sleep deprivation resulted in normal learning being achieved. This would point to the fact that the activation of P waves, even without REM sleep, was enough to enhance the memory processes that would not normally have happened.


Implicit face memory

Faces are an important part of one's social life. To be able to recognize, respond and act towards a person requires unconscious memory encoding and retrieval processes. Facial stimuli are processed in the
fusiform gyrus The fusiform gyrus, also known as the ''lateral occipitotemporal gyrus'','' ''is part of the temporal lobe and occipital lobe in Brodmann area 37. The fusiform gyrus is located between the lingual gyrus and parahippocampal gyrus above, and th ...
(occipito-temporal brain area) and this processing is an implicit function representing a typical form of
implicit memory In psychology, implicit memory is one of the two main types of long-term human memory. It is acquired and used unconsciously, and can affect thoughts and behaviours. One of its most common forms is procedural memory, which allows people to perfo ...
. REM sleep has been seen to be more beneficial to implicit visuospatial memory processes, rather than
slow-wave sleep Slow-wave sleep (SWS), often referred to as deep sleep, consists of stage three of non-rapid eye movement sleep. It usually lasts between 70 and 90 minutes and takes place during the first hours of the night. Initially, SWS consisted of both St ...
which is crucial for explicit
memory consolidation Memory consolidation is a category of processes that stabilize a memory trace after its initial acquisition. A memory trace is a change in the nervous system caused by memorizing something. Consolidation is distinguished into two specific processe ...
. REM sleep is known for its visual experiences, which may often include detailed depictions of the human countenance. A recognition task was used to gauge familiarity with a previously shown sequence of faces after a subsequent period of REM sleep. It was seen that the fusiform gyrus was active during training, the REM sleep period, and the recognition task as well. It is hypothesized that brain mechanisms during REM sleep, as well as pure repetition priming, can account for the implicit recognition of the previously shown faces.


Macroscopic brain systems

Previous research has shown REM sleep to reactivate cortical neural assemblies post-training on a serial reaction time task (SRT), in other words REM sleep replays the processing that occurred while one learnt an implicit task in the previous waking hours. However, control subjects did not complete a SRT task, thus researchers could not assume the reactivation of certain networks to be a result of the implicitly learned sequence/grammar as it could simply be due to elementary visuomotor processing which was obtained in both groups. To answer this question the experiment was redone and another group was added who also took part in the SRT task. They experienced no sequence to the SRT task (random group), whereas the experimental group did experience a sequence (probabilistic group), although without conscious awareness. Results of PET scans indicate that bilateral cuneus were significantly more activated during SRT practice as well as post-training REM sleep in the Probabilistic group than the Random group. In addition, this activation was significantly increased during REM sleep versus the SRT task. This suggests that specific brain regions are specifically engaged in the post-processing of sequential information. This is further supported by the fact that regional CBF (rCBF) during post-training REM sleep are modulated by the level of high-order, but not low-order learning obtained prior to sleep. Therefore, brain regions that take part in a learning process are modulated by both the sequential structure of the learned material (increased activation in cuneus), and the amount of high-order learning (rCBF).


REM sleep deprivation and neurotrophic factors

The effects of REM sleep deprivation (RSD) on neurotrophic factors, specifically nerve growth factor (NGF) and
brain-derived neurotrophic factor Brain-derived neurotrophic factor (BDNF), or abrineurin, is a protein found in the and the periphery. that, in humans, is encoded by the ''BDNF'' gene. BDNF is a member of the neurotrophin family of growth factors, which are related to the canon ...
(BDNF), were assessed in 2000 by Sie et al. Neurotrophins are proteins found in the brain and periphery that aid in the survival, functioning and generation of neurons; this is an important element in the
synaptic plasticity In neuroscience, synaptic plasticity is the ability of synapses to strengthen or weaken over time, in response to increases or decreases in their activity. Since memories are postulated to be represented by vastly interconnected neural circuits ...
process, the underlying neurochemical foundation in forming memories. Sei et al., inserted
electrode An electrode is an electrical conductor used to make contact with a nonmetallic part of a circuit (e.g. a semiconductor, an electrolyte, a vacuum or air). Electrodes are essential parts of batteries that can consist of a variety of materials d ...
s into the skulls of seven pairs of rats to measure
electroencephalogram Electroencephalography (EEG) is a method to record an electrogram of the spontaneous electrical activity of the brain. The biosignals detected by EEG have been shown to represent the postsynaptic potentials of pyramidal neurons in the neocortex ...
(EEG), and inserted wires into the neck muscles of the rats to measure
electromyogram Electromyography (EMG) is a technique for evaluating and recording the electrical activity produced by skeletal muscles. EMG is performed using an instrument called an electromyograph to produce a record called an electromyogram. An electromyog ...
(EMG), a technique used to measure the amount of muscle activity. Half the rats experienced a six-hour REM sleep deprivation period, while the other half experienced a six-hour sleep period, containing all sleep cycles. Results showed that the rats in the REM sleep deprivation group experienced decreased levels of brain-derived neurotrophic factor in the cerebellum (coordination, motor learning) and brainstem (sensory and motor ascending pathway); conversely, the
hippocampus The hippocampus (via Latin from Greek , ' seahorse') is a major component of the brain of humans and other vertebrates. Humans and other mammals have two hippocampi, one in each side of the brain. The hippocampus is part of the limbic system, ...
(long-term memory, spatial navigation), showed decreases in nerve growth factor levels. BDNF protein has been shown to be necessary for procedural learning (form of non-declarative memory). Since procedural learning has also exhibited consolidation and enhancement under REM sleep, it is proposed that the impairment of procedural learning tasks is due to the lack of BDNF proteins in the cerebellum and brainstem during RSD. In regards to NGF, the
basal forebrain Part of the human brain, the basal forebrain structures are located in the forebrain to the front of and below the striatum. They include the ventral basal ganglia (including nucleus accumbens and ventral pallidum), nucleus basalis, diagonal b ...
(production and distribution of AcH in the brain), more specifically the medial septal area, sends
cholinergic Cholinergic agents are compounds which mimic the action of acetylcholine and/or butyrylcholine. In general, the word " choline" describes the various quaternary ammonium salts containing the ''N'',''N'',''N''-trimethylethanolammonium cati ...
(excitatory in hippocampus) and GABAergic (inhibitory) neurotransmitters through fibres to the hippocampus target cells. These target cells then secrete NGF which plays a key role in the physiological state of the hippocampus and its functions. It has been noted that REM sleep increases the secretion of NGF, therefore it has been proposed that during RSD cholinergic activity decreases leading to a decrease in NGF and impairment in procedural learning.


Macroscopic brain system reorganization

Walker and Stickgold hypothesized that after initial memory acquisition, sleep reorganizes memory representation at a macro-brain systems level. Their experiment consisted of two groups; the night-sleep group was taught a motor sequence block tapping task at night, put to sleep and then retested 12 hours later. The day-wake group was taught the same task in the morning and tested 12 hours later with no intervening sleep. FMRI was used to measure brain activity during retest. Results indicated significantly fewer errors/sequence in the night-sleep group compared to the day wake group. FMRI output for the night-sleep group indicated increased activation in the right primary motor cortex/M1/Prefrontal Gyrus (contra lateral to the hand they were block tapping with), right anterior medial prefrontal lobe, right hippocampus (long-term memory, spatial memory), right ventral striatum (
olfactory tubercle The olfactory tubercle (OT), also known as the tuberculum olfactorium, is a multi-sensory processing center that is contained within the olfactory cortex and ventral striatum and plays a role in reward cognition. The OT has also been shown to ...
,
nucleus accumbens The nucleus accumbens (NAc or NAcc; also known as the accumbens nucleus, or formerly as the ''nucleus accumbens septi'', Latin for " nucleus adjacent to the septum") is a region in the basal forebrain rostral to the preoptic area of the hypot ...
), as well as regions of the cerebellum (lobules V1, V11). In the day-wake group, fMRI showed "decreased" signal activation bilaterally in the parietal cortices (integrates multiple modalities), in addition to the left insular cortex (regulation of homeostasis), left temporal pole (most anterior of temporal cortex), and the left inferior fronto-polar cortex. Previous investigations have shown that signal increases indicate brain plasticity. The increased signal activity seen in M1 after sleep corresponds to increased activity in this area seen during practice; however, an individual must practice for longer periods than they would have to sleep in order to obtain the same level of M1 signal increases. Therefore, it is suggested that sleep enhances the cortical representation of motor tasks by brain system expansion, as seen by increased signal activity.


Working memory

Considered to be a mental workspace enabling temporary storage and retrieval of information,
working memory Working memory is a cognitive system with a limited capacity that can hold information temporarily. It is important for reasoning and the guidance of decision-making and behavior. Working memory is often used synonymously with short-term memory, ...
is crucial to problem-solving and analysis of different situations. Working memory capacity is a measure of the number of mental processing functions one is able to perform consecutively. Increases in one's working memory capacity can be accomplished with a strategy known as chunking. Aritake et al. conducted a finger sequence tapping experiment in which the subjects were shown coloured dots in sequence on a monitor corresponding to buttons on their keyboard. When a colour was shown, the subject had to react by pressing the right colour on the keyboard. The subjects were separated into three groups. Group one continually trained with no periods of sleep. Group two was trained and retested over ten hours of wakefulness followed by eight hours of sleep and final testing. The third group was trained at ten pm, followed by an eight-hour sleep. This group was then tested the following morning and again later in the same day. Results showed that wakefulness was an insignificant predictor of performance improvement, unless followed by a period of sleep. Groups that were allowed a post training sleep period, regardless of its time in reference to training, experienced improvements in learning the finger tapping sequences. The initial working memory capacity of the groups averaged three to four units. In groups two and three, the working memory capacity was increased to an average of 5–6 units. It was proposed that sleep-dependent improvements may contribute to overall improvement in working memory capacity, leading to improved
fluid intelligence The concepts of fluid intelligence (''g''f) and crystallized intelligence (''g''c) were introduced in 1963 by the psychologist Raymond Cattell. According to Cattell's psychometrically-based theory, general intelligence (''g'') is subdivided into ' ...
.


Sleep deprivation

Sleep deprivation, whether it is total sleep deprivation or partial sleep deprivation, can impair
working memory Working memory is a cognitive system with a limited capacity that can hold information temporarily. It is important for reasoning and the guidance of decision-making and behavior. Working memory is often used synonymously with short-term memory, ...
in measures of memory, speed of cognitive processing, attention and task switching. Casement et al. found that when subjects were asked to recognize digits displayed on a screen by typing them on a keypad, the working memory speed of subjects whose sleep was restricted to four hours a night (approximately 50% of their normal sleep amount) were 58% slower than control groups who were allowed their full eight hours of sleep.


Synaptic plasticity

The brain is an ever-changing, plastic, model of information sharing and processing. In order for the brain to incorporate new experiences into a refined
schema The word schema comes from the Greek word ('), which means ''shape'', or more generally, ''plan''. The plural is ('). In English, both ''schemas'' and ''schemata'' are used as plural forms. Schema may refer to: Science and technology * SCHEMA ...
, it has to undergo specific modifications to consolidate and assimilate all new information.
Synaptic plasticity In neuroscience, synaptic plasticity is the ability of synapses to strengthen or weaken over time, in response to increases or decreases in their activity. Since memories are postulated to be represented by vastly interconnected neural circuits ...
can be described as the changing in strength between two related neurons. Neuroplasticity is most clearly seen in the instances of REM sleep deprivation during brain maturation. Regional brain measurements in neonatal REM sleep deprived rats displayed a significant size reduction in areas such as the
cerebral cortex The cerebral cortex, also known as the cerebral mantle, is the outer layer of neural tissue of the cerebrum of the brain in humans and other mammals. The cerebral cortex mostly consists of the six-layered neocortex, with just 10% consistin ...
and the
brain stem The brainstem (or brain stem) is the posterior stalk-like part of the brain that connects the cerebrum with the spinal cord. In the human brain the brainstem is composed of the midbrain, the pons, and the medulla oblongata. The midbrain is co ...
. The rats were deprived during critical periods after birth, and subsequently anatomical size reduction is observed. Using a pursuit task (used to test visuomotor capabilities) in combination with an
fMRI Functional magnetic resonance imaging or functional MRI (fMRI) measures brain activity by detecting changes associated with blood flow. This technique relies on the fact that cerebral blood flow and neuronal activation are coupled. When an area ...
, Maquet et al., 2003, found that increases in activation were seen in the supplementary eye field and right
dentate nucleus The dentate nucleus is a cluster of neurons, or nerve cells, in the central nervous system that has a dentate – tooth-like or serrated – edge. It is located within the deep white matter of each cerebellar hemisphere, and it is the largest sin ...
of subjects who were allowed to sleep as compared to sleep deprived individuals. The right
superior temporal sulcus The superior temporal sulcus (STS) is the sulcus separating the superior temporal gyrus from the middle temporal gyrus in the temporal lobe of the brain. A sulcus (plural sulci) is a deep groove that curves into the largest part of the brain, ...
was also noticed to have higher activation levels. When functional connectivity was analyzed it was found that the dentate nucleus was more closely involved with the functions of the superior temporal sulcus. The results suggest that performance on the pursuit task relies on the subject's ability to comprehend appropriate movement patterns in order to recreate the optimal movements. Sleep deprivation was found to interrupt the slow processes that lead to learning of this procedural skill and alter connectivity changes that would have normally been seen after a night of rest.
Neuroplasticity Neuroplasticity, also known as neural plasticity, or brain plasticity, is the ability of neural networks in the brain to change through growth and reorganization. It is when the brain is rewired to function in some way that differs from how it p ...
has been thoroughly researched over the past few decades and results have shown that significant changes that occur in our cortical processing areas have the power to modulate neuronal firing to both new and previously experienced stimuli.


Neurotransmitter regulation

The changes in quantity of a certain neurotransmitter as well as how the post-synaptic terminal responds to this change are underlying mechanisms of brain plasticity. During sleep there are remarkable changes in modulatory neurotransmitters throughout the brain. Acetylcholine is an
excitatory neurotransmitter A neurotransmitter is a signaling molecule secreted by a neuron to affect another cell across a synapse. The cell receiving the signal, any main body part or target cell, may be another neuron, but could also be a gland or muscle cell. Neurot ...
that is seen to increase to near waking levels during REM sleep while compared to lower levels during slow-wave sleep. Evidence has shown that functioning of the hippocampus-dependent memory system (
episodic memory Episodic memory is the memory of everyday events (such as times, location geography, associated emotions, and other contextual information) that can be explicitly stated or conjured. It is the collection of past personal experiences that occurred ...
and
autobiographical memory Autobiographical memory is a memory system consisting of episodes recollected from an individual's life, based on a combination of episodic (personal experiences and specific objects, people and events experienced at particular time and place) a ...
) is directly affected by cholinergic changes throughout the wake-sleep cycle. High levels of ACh would promote information attained during wakefulness to be stored in the hippocampus. This is accomplished by suppressing previous excitatory connections while facilitating encoding without interference from previously stored information. During
NREM Non-rapid eye movement sleep (NREM), also known as quiescent sleep, is, collectively, sleep stages 1–3, previously known as stages 1–4. Rapid eye movement sleep (REM) is not included. There are distinct electroencephalographic and other char ...
sleep, and especially
slow-wave sleep Slow-wave sleep (SWS), often referred to as deep sleep, consists of stage three of non-rapid eye movement sleep. It usually lasts between 70 and 90 minutes and takes place during the first hours of the night. Initially, SWS consisted of both St ...
, low levels of Ach would cause the release of this suppression and allow for spontaneous recovery of hippocampal neurons resulting in the facilitation of
memory consolidation Memory consolidation is a category of processes that stabilize a memory trace after its initial acquisition. A memory trace is a change in the nervous system caused by memorizing something. Consolidation is distinguished into two specific processe ...
.


Gene expression

Recently, approximately one hundred genes whose brain expression is increased during periods of sleep have been found. A similar number of genes were found to promote gene expression during wakefulness. These sets of genes are related to different functional groups which may promote different cellular processes. The genes expressed during wakefulness may perform numerous duties including energy allocation, synaptic excitatory neurotransmission, high transcriptional activity and synaptic potentiation in learning of new information. There was a sleep related increase in processes that involve the synthesis and maintenance of the synapse. Such processes include
membrane trafficking Membrane vesicle trafficking in eukaryotic animal cells involves movement of biochemical signal molecules from synthesis-and-packaging locations in the Golgi body to specific release locations on the inside of the plasma membrane of the secretory ...
,
synaptic vesicle In a neuron, synaptic vesicles (or neurotransmitter vesicles) store various neurotransmitters that are released at the synapse. The release is regulated by a voltage-dependent calcium channel. Vesicles are essential for propagating nerve impulse ...
recycling, myelin structural protein formation, and
cholesterol Cholesterol is any of a class of certain organic molecules called lipids. It is a sterol (or modified steroid), a type of lipid. Cholesterol is biosynthesized by all animal cells and is an essential structural component of animal cell mem ...
and protein synthesis. In a different study it was found that there was a sleep related increase in calmodulin-dependent
protein kinase A protein kinase is a kinase which selectively modifies other proteins by covalently adding phosphates to them (phosphorylation) as opposed to kinases which modify lipids, carbohydrates, or other molecules. Phosphorylation usually results in a fu ...
IV that has been specifically involved in synaptic depression and in the consolidation of
long-term memory Long-term memory (LTM) is the stage of the Atkinson–Shiffrin memory model in which informative knowledge is held indefinitely. It is defined in contrast to short-term and working memory, which persist for only about 18 to 30 seconds. Long- ...
. These findings encourage an association between sleep and different aspects of neural plasticity.


Alternative sleep schedules


Motor skills learning

The impact of daytime
nap A nap is a short period of sleep, typically taken during daytime hours as an adjunct to the usual nocturnal sleep period. Naps are most often taken as a response to drowsiness during waking hours. A nap is a form of biphasic or polyphasic sl ...
s was looked at by Walker and Stickgold (2005). The experimental group was given a 60-90 minute afternoon nap (one full cycle), after a
motor skill A motor skill is a function that involves specific movements of the body's muscles to perform a certain task. These tasks could include walking, running, or riding a bike. In order to perform this skill, the body's nervous system, muscles, and br ...
s task learned that morning, while the control group received no nap. The nap group improved 16% when tested after their nap, while the no-nap group made no significant improvements. However, it seemed to all even out after that same night's sleep; the no-nap group improved 24% and the nap group improved only 7% more for a total of 23%, virtually identical. With regards to motor skills learning, naps seem to only speed up skill enhancement, not increase the amount of enhancement.


Visuals skills learning

Much like motor skills learning, verbal skills learning increased after a daytime nap period. Researchers Mednick and colleagues have shown that if a visual skills task (find task) is taught in the morning and repeatedly tested throughout the day, individuals will actually become worse at the task. The individuals that were allowed a 30-60 minute nap seemed to gain stabilization of the skill, as no deterioration occurred. If allowed a 60-90 minute nap ( REM sleep and
slow-wave sleep Slow-wave sleep (SWS), often referred to as deep sleep, consists of stage three of non-rapid eye movement sleep. It usually lasts between 70 and 90 minutes and takes place during the first hours of the night. Initially, SWS consisted of both St ...
), individuals displayed enhancement. Unlike the motor task, enhancement was not suppressed during the nocturnal sleep if the individual had napped earlier. In the situation of visual skill learning, naps have been shown to prevent wakeful deterioration and even enhance learning above and beyond enhancement occurring in nocturnal sleep.


Shift workers

Shift work Shift work is an employment practice designed to make use of, or provide service across, all 24 hours of the clock each day of the week (often abbreviated as '' 24/7''). The practice typically sees the day divided into shifts, set periods of ...
ers who work throughout the night have been known to have far more accidents as opposed to daytime workers.' This can be attributed to several factors, including fewer staff and fatigue; however, part of the problem may be the workers' poor
working memory Working memory is a cognitive system with a limited capacity that can hold information temporarily. It is important for reasoning and the guidance of decision-making and behavior. Working memory is often used synonymously with short-term memory, ...
and poor performance skills due to poor
memory consolidation Memory consolidation is a category of processes that stabilize a memory trace after its initial acquisition. A memory trace is a change in the nervous system caused by memorizing something. Consolidation is distinguished into two specific processe ...
. Both implicitly learned tasks and explicitly learned tasks improve by roughly 20% after a full nights sleep. Without an adequate nights sleep between learning a new task and performance of that task, performance fails to improve. Shift workers who are not given an adequate amount of sleep, particularly in the
NREM Non-rapid eye movement sleep (NREM), also known as quiescent sleep, is, collectively, sleep stages 1–3, previously known as stages 1–4. Rapid eye movement sleep (REM) is not included. There are distinct electroencephalographic and other char ...
stage, between learning and performance of a task will not perform as well as workers who maintain a standard sleep routine.


Sleep and aging

Sleep often becomes deregulated in the elderly, a problem which can lead to or exacerbate pre-existing memory decline.


Healthy older adults

The positive correlation between sleep and memory breaks down with aging. In general, older adults suffer from decreased sleep efficiency. The amount of time and density of REM sleep and SWS decreases with age. Consequently, it is common that the elderly receive no increase in memory after a period of rest. To combat this,
donepezil Donepezil, sold under the brand name Aricept among others, is a medication used to treat dementia of the Alzheimer's type. It appears to result in a small benefit in mental function and ability to function. Use, however, has not been shown to ...
has been tested in healthy elderly patients where it was shown to increase time spent in REM sleep and improve following day memory recall.


Alzheimer's disease

Alzheimers disease is thought to be caused by the abnormal buildup of protiens around brain cells which disrupt the activity of neurotransmitters. Patients with Alzheimer's disease experience more sleep disruption than the healthy elderly. Studies have shown that in patients with Alzheimer's disease, there is a decrease in fast spindles. It has also been reported that spindle density the night before a memory test correlates positively with accuracy on an immediate recall task. A positive correlation between time spent in SWS and next day autobiographical memory recall has also been reported in Alzheimer's patients.


See also

*
Emotion and memory Emotion can have a powerful effect on humans and animals. Numerous studies have shown that the most vivid autobiographical memories tend to be of emotional events, which are likely to be recalled more often and with more clarity and detail than ...
*
Memory and aging Age-related memory loss, sometimes described as "normal aging" (also spelled "ageing" in British English), is qualitatively different from memory loss associated with types of dementia such as Alzheimer's disease, and is believed to have a differ ...
* Memory and social interactions *
Memory improvement Memory improvement is the act of enhancing one's memory. Memory deficits, age-related memory loss, and people's want to improve their own memory have led to research on how to best help people to improve their memory. Research has also worked to ...
*
Sleep study A sleep study is a test that records the activity of the body during sleep. There are five main types of sleep studies that use different methods to test for different sleep characteristics and disorders. These include simple sleep studies, polyso ...
*
Biphasic and polyphasic sleep Biphasic sleep (or ''diphasic'', ''bifurcated'', or bimodal sleep) is the practice of sleeping during two periods over the course of 24 hours, while polyphasic sleep refers to sleeping multiple times—usually more than two. Each of these is in ...


References

{{memory Memory Sleep