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A novel method to study contraction characteristics of a single cardiac myocyte using carbon fibers.

机译:研究使用碳纤维的单个心肌细胞收缩特性的新方法。

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摘要

To facilitate cardiac muscle research, we developed a novel method by which the force and length of a single ventricular myocyte can be recorded with a pair of carbon graphite fibers attached firmly to both ends. One fiber was stiff, whereas the other fiber was compliant to allow the recording of force and shortening during twitch contractions. The image of the compliant carbon fiber was projected onto a pair of photodiodes, and their output was fed to a piezoelectric transducer after variable amplifications to alter the effective compliance of the carbon fiber. Thus contraction of the myocyte was induced under virtually isometric conditions as well as under auxotonic conditions. We obtained a bell-shaped relation between the compliance under an auxotonic load and the work output of the myocyte, which was directly related to myocyte performance in the heart. Because it is easy to attach myocytes to the experimental apparatus, the present method would allow us to study cardiac muscle mechanics at the cellular and molecular levels.
机译:为了促进心肌研究,我们开发了一种新颖的方法,通过该方法,可以通过将碳石墨纤维固定在两端的方式记录单个心室肌细胞的力和长度。一种纤维是硬的,而另一种纤维是柔顺的,以允许记录抽搐收缩期间的力和缩短。顺应性碳纤维的图像投影到一对光电二极管上,可变放大后将其输出馈送到压电换能器,以改变碳纤维的有效顺应性。因此,在实际上等距的条件下以及在声压条件下都诱导了心肌细胞的收缩。我们获得了在低渗负荷下的顺应性与心肌细胞的功输出之间的钟形关系,这与心脏中的心肌细胞性能直接相关。因为很容易将心肌细胞附着到实验设备上,所以本方法将使我们能够在细胞和分子水平上研究心肌力学。

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