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Computational Modeling of Cardiac Growth in the Post-Natal Rat with a Strain-Based Growth Law

机译:基于菌株的生长法产后大鼠心脏生长的计算模拟

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摘要

IntroductionThe postnatal heart grows mostly in response to increased hemodynamic load. However, the specific biomechanical stimuli that stimulate cardiac growth as a reaction to increased hemodynamic load are still poorly understood. It has been shown that isolated neonatal rat cardiac myocytes normalize resting sarcomere length by adding sarcomeres in series when subjected to uniaxial static strain. Because there is experimental evidence that myocytes can distinguish the direction of stretch, it was postulated that myocytes also may normalize interfilament lattice spacing as a response to cross-fiber stretch.

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