Sándor J. Kovács
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Sándor J. Kovács (born August 17, 1947) is a Hungarian-American academic cardiologist and cardiovascular physiologist, best known for his work on the physiological dynamics of the human heart. He is a professor of medicine, physics, physiology, and biomedical engineering at
Washington University in St. Louis Washington University in St. Louis (WashU or WUSTL) is a private research university with its main campus in St. Louis County, and Clayton, Missouri. Founded in 1853, the university is named after George Washington. Washington University is r ...
.


Early life and education

Born in
Budapest Budapest (, ; ) is the capital and most populous city of Hungary. It is the ninth-largest city in the European Union by population within city limits and the second-largest city on the Danube river; the city has an estimated population ...
,
Hungary Hungary ( hu, Magyarország ) is a landlocked country in Central Europe. Spanning of the Carpathian Basin, it is bordered by Slovakia to the north, Ukraine to the northeast, Romania to the east and southeast, Serbia to the south, Croatia a ...
, Kovács, with his parents and sister, fled Hungary at the time of the Hungarian Revolution of 1956. His earliest memories are of scarcity and hardship during the communist era. The family was interned in Austrian refugee camps until 1959, when they were allowed to immigrate to
Brooklyn Brooklyn () is a borough of New York City, coextensive with Kings County, in the U.S. state of New York. Kings County is the most populous county in the State of New York, and the second-most densely populated county in the United States, be ...
, New York. As Kovács recalled in an interview, Kovács graduated from
Brooklyn Technical High School Brooklyn Technical High School, commonly called Brooklyn Tech and administratively designated High School 430, is an elite public high school in New York City that specializes in science, technology, engineering, and mathematics. It is one of th ...
and earned a B.S. in engineering at
Cornell University Cornell University is a private statutory land-grant research university based in Ithaca, New York. It is a member of the Ivy League. Founded in 1865 by Ezra Cornell and Andrew Dickson White, Cornell was founded with the intention to teach an ...
in 1969. He then went to
Caltech The California Institute of Technology (branded as Caltech or CIT)The university itself only spells its short form as "Caltech"; the institution considers other spellings such a"Cal Tech" and "CalTech" incorrect. The institute is also occasional ...
, where he initially studied theoretical and applied mechanics, transferred to physics and worked with Kip S. Thorne, receiving a Ph.D. in theoretical physics in 1977. The title of his thesis was "The Generation of
Gravitational Waves Gravitational waves are waves of the intensity of gravity generated by the accelerated masses of an orbital binary system that Wave propagation, propagate as waves outward from their source at the speed of light. They were first proposed by Oliv ...
".Washington University in St. Louis School of Medicine
"Sandor J. Kovacs"
/ref> While at Caltech, he was influenced by many interactions with Richard Feynman and George Zweig, when the latter was interested in the physics and physiology of human hearing. Determined to change from theoretical physics to medicine, Kovács entered an accelerated Ph.D. to M.D. program at the
University of Miami The University of Miami (UM, UMiami, Miami, U of M, and The U) is a private research university in Coral Gables, Florida. , the university enrolled 19,096 students in 12 colleges and schools across nearly 350 academic majors and programs, incl ...
that awarded him a medical degree after 22 months of concentrated study, in 1979.


Career

Kovács' subsequent career has been entirely at Washington University in St. Louis. After an internship and residency at Barnes Hospital, he became an instructor in medicine in 1985, served as director of the cardiac catheterization laboratory at the St Louis VA Medical Center (1985-1990) advancing through the ranks to professor of medicine, with also appointments in physiology, biomedical engineering, and physics, in 2007. The Kovács research group is primarily a theory group which has pioneered conceptual frameworks for analyzing
diastole Diastole ( ) is the relaxed phase of the cardiac cycle when the chambers of the heart are re-filling with blood. The contrasting phase is systole when the heart chambers are contracting. Atrial diastole is the relaxing of the atria, and ventric ...
by incorporating and kinematically modeling the suction pump role of the heart, and the dynamics of the four-chambered heart in the space of coordinates spanned by P (pressure), V (volume), and their time rates of change dP/dt and dV/dt. They then seek to validate the model predictions using human, in vivo physiologic measurements of pressures (high fidelity transducers) and flows (
echocardiography An echocardiography, echocardiogram, cardiac echo or simply an echo, is an ultrasound of the heart. It is a type of medical imaging of the heart, using standard ultrasound or Doppler ultrasound. Echocardiography has become routinely used in t ...
) of masses and volumes of heart chambers (cardiac MRI). Among the results from this work is that the so-called third heart sound, "S3", formerly taught to be pathological, is actually produced by all hearts, but is merely below the threshold of hearing of most physicians. Additional advances include the 'Parametrized Diastolic Filling (PDF) Formalism' wherein the early, mechanical suction-initiated rapid filling portion of diastole (the echocardiographic Doppler E-wave) is modeled kinematically in analogy to the recoil, from rest, of a damped simple harmonic oscillator. The linearity of the model allows solution of the inverse problem of diastole, using the digitized clinical Doppler E-wave contour as input, and obtaining unique values of the PDF parameters, that characterize load, viscosity/relaxation and chamber stiffness for each E-wave analyzed as output. Investigators at the Karolinska Institutet have made free software available, called Echo E-waves at www.echoewaves.org that facilitates rapid PDF formalism based assessment of
diastolic function In clinical cardiology the term "diastolic function" is most commonly referred as how the heart fills. Parallel to "diastolic function", the term " systolic function" is usually referenced in terms of the left ventricular ejection fraction (LVEF), w ...
. Furthermore, the Echo E-waves program computes the load independent index of diastolic function (LIIDF). Among its many applications the PDF formalism led to solution of the long sought 'load-independent index of diastolic function' (LIIDF) problem, and to the realization that left ventricular volume at diastasis is the in vivo equilibrium volume of the left ventricle. In addition, kinematic characterization of diastolic function has advanced understanding of form and function via the relationship of vortex formation and endocardial motion to achieve optimal volume pumping in diastole. Additional insight into the physiology of diastole has been achieved by the recognition that hydraulic forces, generated by the time varying cross sectional area difference between the left atrium and left ventricle, play a role in longitudinal volume accommodation by the ventricle. Kovács spends about half of his time on clinical activities, including performing diagnostic cardiac catheterizations involving simultaneous echocardiography complemented by related cardiac MRI techniques. In addition, he has taught a one semester, BME department, junior level course on Quantitative Cardiovascular Physiology.


Selected publications

*Chung C, Shmuylovich L, Kovács SJ. "What global diastolic function is, what it is not, and how to measure it." American Journal of Physiology Heart and Circulatory Physiology doi:10.1152/ajpheart.00436.2015. *Shmuylovich L, Chung CS, Kovács SJ, Yellin E, Nikolic SD. Point-Counterpoint: Left ventricular volume during diastasis IS/IS NOT the physiologic in-vivo equilibrium volume and IS/IS NOT related to diastolic suction? Journal of Applied Physiology 2009 Dec 24. (JAPPL-01399-2009). *Shmuylovich L, Kovács SJ. Stiffness and relaxation components of the exponential and logistic time-constants may be used to derive a load-independent index of isovolumic pressure decay. American Journal of Physiology Heart and Circulatory Physiology 2008 Dec 295(6):H2551-9. Epub 2008 Oct 24. *Zhang W, Kovács SJ. The Diastatic Pressure-Volume Relationship Is Not the Same as the End-Diastolic Pressure-Volume Relationship. American Journal of PhysiologyHeart and Circulatory Physiology 2008doi:10.1152/ajpheart.00200. *Riordan MM, Weiss EP, Meyer TE, Ehsani AA, Racette SB, Villareal D, Fontana L, Holloszy JO, Kovács SJ. The Effects of Caloric Restriction- and Exercise-Induced Weight Loss on Left Ventricular Diastolic Function. American Journal of Physiology Heart and Circulatory Physiology 2008 294:H1174-82. *Chung CS, Kovács SJ. The Physical Determinants of Left Ventricular Isovolumic Pressure Decline: Model Prediction with in-vivo Validation. American Journal of Physiology, Heart and Circulatory Physiology 2008 294:1589-1596.


Honors

Kovács received the Sjöstrand Medal in Physiology from the Swedish Society of Clinical Physiology and Medicine in 2007. He was elected President of the Cardiovascular System Dynamics Society (CSDS) in 2006 and served until 2008. He is a recipient of the Öcsi Bácsi Award of Caltech's TAPIR Group. He is a distinguished foreign member of the Hungarian Society of Cardiology. He has been elected twice as president of the Barnes-Jewish Hospital Medical Staff Association (2003-2004 and 2015–2016) and served as a member of the Board of Barnes-Jewish Hospital (2015-2016). He is the recipient of Barnes-Jewish Hospital Medical Association's Lifetime Achievement "Master Physician" Award, April 2017. In May 2018, for his contributions to quantitative cardiovascular physiology and mathematical modeling of heart pumping function, Kovács received an honorary degree from
Lund University , motto = Ad utrumque , mottoeng = Prepared for both , established = , type = Public research university , budget = SEK 9 billion Hungarian Academy of Sciences The Hungarian Academy of Sciences ( hu, Magyar Tudományos Akadémia, MTA) is the most important and prestigious learned society of Hungary. Its seat is at the bank of the Danube in Budapest, between Széchenyi rakpart and Akadémia utca. Its ma ...
in 2022.https://source.wustl.edu/2022/07/kovacs-elected-to-hungarian-academy-of-sciences/#:~:text=S%C3%A1ndor%20J.,the%20Hungarian%20Academy%20of%20Sciences.


References


External links


Cardiovascular Biophysics Laboratory, Washington University, School of Medicine
{{DEFAULTSORT:Kovacs, Sandor J. 1947 births Living people Hungarian emigrants to the United States American cardiologists Washington University in St. Louis physicists Washington University School of Medicine faculty Cornell University College of Engineering alumni California Institute of Technology alumni University of Miami alumni