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Open-globe injuries (also called globe rupture, globe laceration, globe penetration, or globe perforation) are full-thickness eye-wall wounds requiring urgent diagnosis and treatment.


Classification

In 1996 Kuhn et al. created the Birmingham eye trauma terminology (BETT) to standardize the language used to describe traumatic ocular injuries internationally. The BETT schema classifies open globe injuries as a laceration or a rupture. A ruptured globe occurs when rapid intraocular pressure elevation secondary to blunt trauma results in eyewall failure. The rupture site may be at the point of impact but more commonly occurs at the weakest and thinnest areas of the sclera. Regions prone to rupture are the rectus muscle insertion points, optic nerve insertion point, limbus, and prior surgical sites. Globe lacerations occur when a sharp object or projectile contacts the eye causing a full-thickness wound at the point of contact. Globe lacerations are further sub-classified into penetrating or perforating injuries. Penetrating injuries result in a single, full-thickness entry wound. In contrast, perforating injuries produce two full-thickness wounds at the entry and exit sites of the projectile. A penetrating globe injury with a retained foreign object, called an intraocular foreign body, has a different prognosis than a simple penetrating trauma. Therefore intraocular foreign body injuries are considered a distinct type of ocular injury. Open-globe injuries are also classified by the anatomic region or zone of injury: * Zone 1- injury involves the cornea and limbus. * Zone 2- injury involves the anterior 5mm of the sclera. * Zone 3- injury involves the sclera, more than 5mm posterior to the limbus.


Anatomy

The eye wall is composed of three layers that lie flat against each other to form the eyeball. The external layer is a tough, white membrane called the
sclera The sclera, also known as the white of the eye or, in older literature, as the tunica albuginea oculi, is the opaque, fibrous, protective, outer layer of the human eye containing mainly collagen and some crucial elastic fiber. In humans, and som ...
with a clear dome at the front of the eye called the
cornea The cornea is the transparent front part of the eye that covers the iris, pupil, and anterior chamber. Along with the anterior chamber and lens, the cornea refracts light, accounting for approximately two-thirds of the eye's total optical power ...
. The line where the sclera and cornea converge is known as the limbus. The middle layer consists of the colored part of the eye known as the
iris Iris most often refers to: *Iris (anatomy), part of the eye *Iris (mythology), a Greek goddess * ''Iris'' (plant), a genus of flowering plants * Iris (color), an ambiguous color term Iris or IRIS may also refer to: Arts and media Fictional ent ...
, a muscular structure behind the iris responsible for focusing the
lens A lens is a transmissive optical device which focuses or disperses a light beam by means of refraction. A simple lens consists of a single piece of transparent material, while a compound lens consists of several simple lenses (''elements''), ...
known as the
ciliary body The ciliary body is a part of the eye that includes the ciliary muscle, which controls the shape of the lens, and the ciliary epithelium, which produces the aqueous humor. The aqueous humor is produced in the non-pigmented portion of the ciliar ...
, and a layer of blood vessels known as the
choroid The choroid, also known as the choroidea or choroid coat, is a part of the uvea, the vascular layer of the eye, and contains connective tissues, and lies between the retina and the sclera. The human choroid is thickest at the far extreme rear ...
. The retina is the innermost layer of the eye. The
retina The retina (from la, rete "net") is the innermost, light-sensitive layer of tissue of the eye of most vertebrates and some molluscs. The optics of the eye create a focused two-dimensional image of the visual world on the retina, which then ...
contains nerve cells responsible for sensing light and sending visual information to the brain. The eye can also be divided into three chambers: * Anterior chamber: (between the cornea and iris) * Posterior chamber: (between the iris and lens) * Vitreous chamber: (between the lens and retina)


Epidemiology

There are an estimated 3.5 eye injuries per 100,000 people annually worldwide. The most frequently reported mechanism of injury was trauma by foreign objects (metal, sand, wood), shotgun injuries, motor vehicle accidents, and falls in the home. All mechanisms of injury were more prevalent in males except domestic falls, where a majority of patients were female. Males comprise 80% of open globe injuries, with men between 10 and 30 years of age at the most significant risk. The mechanism and classification of open-globe injury may also vary by age. Penetrating eye lacerations due to pellet-gun, sport, motor vehicle, or fight-related injuries are more common in adolescent males. Whereas young men tend to sustain penetrating or perforating eye injuries at work, during an assault, or due to alcohol and drug-related accidents. Globe rupture is more common than eyewall lacerations in older patients, with ground-level falls the most common mechanism in those over 75 years of age.


Signs and Symptoms

Symptoms of an open-globe injury include eye pain, foreign body sensation, eye redness, and blurry or double vision. While globe injuries are commonly associated with peri-ocular trauma that may obstruct diagnosis, several signs suggest open-globe damage: * Visible corneal or scleral laceration * Sub-conjunctival hemorrhage * Protruding foreign bodies * Vitreous fluid leakage * Changes in iris or pupil shape


Diagnosis

Life threatening-injuries should be evaluated first in those with eye injuries, with life-saving treatments provided before an eye examination. When examining a known or suspected open-globe injury, it is vital to avoid applying pressure to the eye. A sudden increase in intraocular pressure could cause the extrusion of ocular contents. Therefore, the initial assessment does not involve tonometry or eversion of eyelids.


Examination

A Snellen chart or near card may be used to test visual acuity. If visual impairment is significant, evaluation can be done by evaluating the ability to count fingers, see hand movement, or perceive light. Visual acuity assessment might not be possible due to age and developmental capability in children or preexisting visual impairment in older patients. A slit lamp exam allows a detailed inspection of the conjunctiva and sclera and improves the detection of globe injury. Slit lamp exam findings like decreased anterior chamber depth or damage to posterior chamber structures indicate open-globe injury. A seidel test detects more subtle or partially self-sealing open-globe injuries. Fluorescein dye is applied to the eye's surface to detect leakage of clear fluid originating from the wound using a Wood's lamp or blue light. This test is avoided in obvious globe injury.


Imaging

Non-contrast maxillofacial computed tomography (CT) is the imaging modality recommended for ocular trauma. However, CT scan findings should are not the sole determining factor for identifying open-globe injuries. CT scans have a 50 – 80% sensitivity and 90 - 100% specificity for open-globe injuries. CT scan findings to suggest open globe injury include: * Altered globe contour * Decreased anterior chamber depth * Globe volume loss * Presence of an intraocular foreign body * Intraocular air Magnetic resonance imaging (MRI) is avoided during the initial evaluation, particularly if metallic foreign bodies are suspected. Ultrasound can detect intraocular foreign bodies and evaluate posterior chamber structures. However, direct pressure on the globe during an ultrasound can worsen the injury.


Treatment

Open-globe injuries require urgent evaluation by an ophthalmologist. Initial treatment includes bed rest with a 30-degree elevation of the head, proactive management of pain and nausea, and placement of an eye shield. These measures prevent further damage and limit increases in intraocular pressure. Endophthalmitis or internal eye infection occurs at a rate as high as 30% especially in cases complicated by an intraocular foreign body. Management with 48 hours of intravenous antibiotics decreases the rate of post-traumatic endophthalmitis and its potentially devastating consequences. Vancomycin plus ceftazidime cover infections caused by common organisms (e.g. Bacillus species, coagulase-negative Staphylococcus, Streptococcal species, and gram-negative organisms). Tetanus prophylaxis may be considered, depending on the type of injury and the time since the last immunization. Surgical repair of an open-globe injury within 24 hours of injury is ideal. After surgical repair, patients should avoid strenuous activities like heavy lifting and exercise and wear an eye shield or other protective eyewear.


References

{{Eye pathology Ophthalmology