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Titlebook: Blood Pressure and Arterial Wall Mechanics in Cardiovascular Diseases; Michel E. Safar,Michael F. O‘Rourke,Edward D. Froh Book 2014 Spring

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Animal Models for Studies of Arterial Stiffnesstuents and their organization to the physiology of normal and early vascular ageing..The most widely used parameter to investigate arterial stiffness in rodents is pulse wave velocity (PWV). The relation between strain and stress is also established to characterize the intrinsic behaviour of the art
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Elastin, Calcium and Age-Related Stiffening of the Arterial Walland high (for renal and other functions) pressure components. The latter required a change from a low-pressure peristaltic to a high-pressure pulsatile, cardiac function. In this high-pressure system arteries near the heart damp the pulse pressure wave. Damping, which depends upon the visco-elastic
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Genetic and Cellular Aspects of Arterial Stiffnessof cardiovascular complications. Cellular and molecular determinants of arterial stiffness have not been completely elucidated. Clinically, the carotid-femoral pulse wave velocity (PWV) is the gold standard parameter of arterial stiffness. A recent genome-wide scan of the Framingham Heart Study popu
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Pulsatile Stress, Arterial Stiffness, and Endothelial Function effect results from the shear stress-dependent release of vasoactive factors, as nitric oxide (NO) and endothelium-derived hyperpolarizing factors as epoxyeicosatrienoic acids (EETs) to modify arterial tone, geometry, and trophicity and to optimize vascular functions and cardiovascular coupling. En
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