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Use of a fiber glass optical system to measure the contractile characteristics of a single isolated muscle cell

机译:使用玻璃纤维光学系统测量单个孤立的肌肉细胞的收缩特性

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Abstract: Cell is the basic structural and fundamental unit of all organisms; the smallest structure capable of performing all the activities vital to life. One goal of current research interest is to learn how the muscle varies the strength of its contraction in response to electric stimuli. A wide variety of techniques have been developed to monitor the mechanical response of isolated cardiac myocytes. Some success has been reported either with the use of intact rat myocytes supported by suction micropipettes or in guinea pig myocytes adhering to glass beams. However, the usual measuring techniques exhibit destructive contact performance on live cells. They could not solve the problem, since the cell may die during or after the time-consuming attachment process at the beginning of each experiment. In contrast, a novel optical system, which consists of a microglass tube with an inner diameter the same size of a real cardiac cell, is proposed to simulate real cell's twitch process. the physical parameters of synthetic cell are well known. By comparing the dynamics of the real cell with that of the simulated cell, the twitch characteristics of the real cell can be measured. !19
机译:摘要:细胞是所有生物的基本结构和基本单位。能够执行对生命至关重要的所有活动的最小结构。当前研究兴趣的一个目标是学习肌肉如何响应电刺激而改变其收缩强度。已经开发了各种各样的技术来监测分离的心肌细胞的机械反应。已经报道了通过使用由吸移液管支撑的完整大鼠心肌细胞或粘附在玻璃束上的豚鼠心肌细胞取得了一些成功。然而,常规的测量技术在活细胞上表现出破坏性的接触性能。他们无法解决问题,因为在每次实验开始时,细胞可能会在耗时的附着过程中或之后死亡。相比之下,提出了一种新型光学系统,该系统由内径与真实心脏细胞大小相同的微玻璃管组成,可以模拟真实细胞的抽搐过程。合成电池的物理参数是众所周知的。通过将真实单元格的动力学与模拟单元格的动力学进行比较,可以测量真实单元格的抽动特性。 !19

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