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Stress development, heat production and dynamic modulus of rat isolated cardiac trabeculae revealed in a flow-through micro-mechano-calorimeter

机译:流式微机械量热仪揭示大鼠离体心脏小梁的应力发展,产热和动态模量

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Progress toward understanding the thermo-mechanical behavior of isolated cardiac muscle, excised from either healthy or diseased heart, is contingent on being able to measure simultaneously the stress (force per cross-sectional area) and heat production. Determination of dynamic modulus (dynamic stiffness times muscle length per cross-sectional area) sheds further light on the behavior of the force-and heat-generating actin-myosin cross-bridges. We are in a unique position to perform such measurements, given the recent completion of a micro-mechano-calorimeter. In this paper, we characterize the micro-mechano-calorimeter and present experimental results of twitch stress, heat per twitch and dynamic modulus measured in rat right-ventricular trabeculae at varied stimulus frequencies and muscle lengths. The minute radial dimensions of cardiac trabeculae (which approximate those of a human hair) ensure adequate provision of oxygen and nutrients via diffusion from the continuously replenished superfusate flowing through the measurement chamber. This enables investigation of the thermo-mechanical performance of cardiac trabeculae for many hours.
机译:从健康的或患病的心脏中切除的孤立的心肌的热机械行为的理解进展取决于能够同时测量应力(每横截面积的力)和热量的产生。动态模量(动态刚度乘以每横截面积的肌肉长度)的确定进一步揭示了力和发热肌动蛋白-肌球蛋白跨桥的行为。鉴于最近已完成微机械量热仪,我们处于执行此类测量的独特位置。在本文中,我们表征了微机械量热仪,并给出了在不同刺激频率和肌肉长度下大鼠右心小梁中抽搐应力,每抽搐热和动态模量的实验结果。心脏小梁的微小径向尺寸(近似于人类头发的径向尺寸)可确保通过流经测量室的连续补充的超熔液扩散而提供充足的氧气和营养。这使得能够研究心脏小梁许多小时的热机械性能。

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