In the cardiac left ventricle during systole mechanical load of the myocardial fibers is distributed uniformly. A mechanism is proposed by which control of mechanical load is distributed over many individual control units acting in the environment of the cell. The mechanics of the equatorial region of the left ventricle was modeled by a thick-walled cylinder composed of 6-1500 shells of myocardial fiber material. In each shell a separate control unit was simulated. The direction of the cells was varied so that systolic fiber shortening approached a given optimum of 15%. End-diastolic sarcomere length was maintained at 2.1 microns. Regional early-systolic stretch and global contractility stimulated growth of cellular mass. If systolic shorte...
The heart and microvasculature have characteristics of a complex adaptive system. Extreme challenges...
Thesis (Ph.D.)--University of Washington, 2014Biomechanical modeling of pressure overload-induced ch...
Background: Remodeling is an important long-term determinant of cardiac function throughout the prog...
In the cardiac left ventricle during systole mechanical load of the myocardial fibers is distributed...
In the cardiac left ventricle during systole mechanical load of the myocardial fibers is distributed...
The uniformity of the mechanical load of the cardiac fibers in the wall is maintained by continuous ...
<div><p>Geometry of the heart adapts to mechanical load, imposed by pressures and volumes of the cav...
Deformation and structure of the cardiac wall can be assessed non-invasively by imaging techniques s...
Mathematical models provide a suitable platform to test hypotheses on the relation between local mec...
The mechanics of the ischemic left ventricle during a complete cardiac cycle were simulated using a ...
With circulatory pathology, patient-specific simulation of hemodynamics is required to minimize inva...
The heart and microvasculature have characteristics of a complex adaptive system. Extreme challenges...
Thesis (Ph.D.)--University of Washington, 2014Biomechanical modeling of pressure overload-induced ch...
Background: Remodeling is an important long-term determinant of cardiac function throughout the prog...
In the cardiac left ventricle during systole mechanical load of the myocardial fibers is distributed...
In the cardiac left ventricle during systole mechanical load of the myocardial fibers is distributed...
The uniformity of the mechanical load of the cardiac fibers in the wall is maintained by continuous ...
<div><p>Geometry of the heart adapts to mechanical load, imposed by pressures and volumes of the cav...
Deformation and structure of the cardiac wall can be assessed non-invasively by imaging techniques s...
Mathematical models provide a suitable platform to test hypotheses on the relation between local mec...
The mechanics of the ischemic left ventricle during a complete cardiac cycle were simulated using a ...
With circulatory pathology, patient-specific simulation of hemodynamics is required to minimize inva...
The heart and microvasculature have characteristics of a complex adaptive system. Extreme challenges...
Thesis (Ph.D.)--University of Washington, 2014Biomechanical modeling of pressure overload-induced ch...
Background: Remodeling is an important long-term determinant of cardiac function throughout the prog...