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Dive into the research topics where Charles Peskin is active.

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Featured researches published by Charles Peskin.


Journal of the American College of Cardiology | 2016

RIGHT VENTRICULAR (RV) LINEAR DIMENSIONS ON ECHOCARDIOGRAPHY (ECHO) ARE RELIABLE INDICES OF CARDIAC MAGNETIC RESONANCE (CMR) QUANTIFIED CHAMBER REMODELING: A MULTIMODALITY VALIDATION STUDY

Jiwon Kim; Aparna Srinivasan; Tracy Paul; Alexi Geevarghese; David M. McQueen; Charles Peskin; Meenakshi Rozenstrauch; Anna Wysocka; Noel C.F. Codella; Richard B. Devereux; Jonathan W. Weinsaft

RV chamber remodeling impacts prognosis. Echo linear dimensions are widely used for LV assessment, but are not well validated as quantitative indices of RV size. The population comprised post MI pts undergoing transthoracic echo and CMR within 1 day. On echo, RV end diastolic (ED) and end systolic


Archive | 2001

The immersed boundary method for incompressible fluid-structure interaction

David M. McQueen; Charles Peskin; Lei Zhu


International Journal of the Bioelectromagnetism | 2003

The cable as a basis for a mechanoelectric whole heart model

Edward Vigmond; David M. McQueen; Charles Peskin


Archive | 1987

COMPUTATION OF BLOOD FLOW IN THE HEART.

Charles Peskin; David M. McQueen


Archive | 2011

Basic Research Arrhythmogenic Consequences of Action Potential Duration Gradients in the Atria

Marc-Etienne Ridler; Mike Lee; David M. McQueen; Charles Peskin; Edward J. Vigmond


Archive | 2001

Computer Simulation of the Beating Human Heart

Charles Peskin; David M. McQueen


Archive | 1990

Three-dimensional computer simulation of blood flow in the cardiac chambers

Charles Peskin; David M. McQueen


Archive | 1989

Biomedical applications of a computer model of the heart: Physiology, pathophysiology, and prosthetic valve design

Charles Peskin; David M. McQueen


Archive | 1989

Three-dimensional computer simulation of intracardiac blood flow

Charles Peskin; David M. McQueen


Archive | 1989

A three - dimensional computational method for blood flow in the heart: Immersed elastic fibers in a

Charles Peskin; David M. McQueen

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