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Precontractile optical response during excitation-contraction in human muscle revealed by non-invasive high-speed spatiotemporal NIR measurement

机译:非侵入性高速时空近红外测量显示人肌肉兴奋收缩过程中的收缩前光学反应

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摘要

During muscle contraction the excitation-contraction process mediates the neural input and mechanical output. Proper muscle function and body locomotion depends on the status of the elements in the same process. However, non-invasive and in-vivo methods to study this are not available. Here we show the existence of an optical response occurring during the excitation-contraction process in human biceps brachii muscle. We developed a non-invasive instrument from a photodiode array and light emitting diodes to detect spatially propagating (~5 m/s) and precontractile (~6 ms onset) optical signals closely related to the action potential during electrostimulation. Although this phenomenon was observed 60 years ago on isolated frog muscle cells in the lab, it has not been shown in-vivo before now. We anticipate our results to be a starting point for a new category in-vivo studies, characterising alterations in the excitation-contraction process in patients with neuromuscular disease and to monitor effects of therapy.
机译:在肌肉收缩过程中,兴奋收缩过程介导了神经输入和机械输出。适当的肌肉功能和身体运动取决于同一过程中元素的状态。但是,尚无研究这种非侵入性和体内方法的方法。在这里,我们显示了在人类二头肌肱肌的兴奋收缩过程中发生的光学反应的存在。我们开发了一种由光电二极管阵列和发光二极管组成的非侵入性仪器,用于检测与电刺激过程中的动作电位密切相关的空间传播(〜5μm/ s)和预收缩(〜6 ms发作)光信号。尽管这种现象是60年前在实验室中的分离出的蛙肌细胞上观察到的,但迄今为止尚未在体内得到证实。我们预计我们的结果将成为新类别体内研究的起点,以表征神经肌肉疾病患者的兴奋收缩过程的变化并监测治疗效果。

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