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首页> 外文期刊>Frontiers in Physiology >In vivo Sarcomere Lengths and Sarcomere Elongations Are Not Uniform across an Intact Muscle
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In vivo Sarcomere Lengths and Sarcomere Elongations Are Not Uniform across an Intact Muscle

机译:在完整的肌肉上,体内肌节长度和肌节伸长率不一致

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Sarcomere lengths have been a crucial outcome measure for understanding and explaining basic muscle properties and muscle function. Sarcomere lengths for a given muscle are typically measured at a single spot, often in the mid-belly of the muscle, and at a given muscle length. It is then assumed implicitly that the sarcomere length measured at this single spot represents the sarcomere lengths at other locations within the muscle, and force-length, force-velocity, and power-velocity properties of muscles are often implied based on these single sarcomere length measurements. Although, intuitively appealing, this assumption is yet to be supported by systematic evidence. The objective of this study was to measure sarcomere lengths at defined locations along and across an intact muscle, at different muscle lengths. Using second harmonic generation (SHG) imaging technique, sarcomere patterns in passive mouse tibialis anterior (TA) were imaged in a non-contact manner at five selected locations (“proximal,” “distal,” “middle,” “medial,” and “lateral” TA sites) and at three different lengths encompassing the anatomical range of motion of the TA. We showed that sarcomere lengths varied substantially within small regions of the muscle and also for different sites across the entire TA. Also, sarcomere elongations with muscle lengthening were non-uniform across the muscle, with the highest sarcomere stretches occurring near the myotendinous junction. We conclude that muscle mechanics derived from sarcomere length measured from a small region of a muscle may not well-represent the sarcomere length and associated functional properties of the entire muscle.
机译:肌节长度是理解和解释基本肌肉特性和肌肉功能的关键指标。给定肌肉的肌节长度通常在单个位置(通常在肌肉的中腹部)和给定的肌肉长度进行测量。然后隐式假定在此单个点测量的肌节长度代表肌肉内其他位置的肌节长度,并且通常基于这些单个肌节长度来隐含肌肉的力长,力速和力量速度特性测量。尽管从直观上讲吸引人,但此假设尚待系统证据支持。这项研究的目的是在完整的肌肉上和不同肌肉长度的特定位置测量肌节长度。使用二次谐波生成(SHG)成像技术,以非接触方式在五个选定位置(“近端”,“远端”,“中间”,“中间”和“中间”)对被动小鼠胫前肌(TA)中的肌节图案进行成像。 “侧向” TA部位)并以三个不同的长度涵盖了TA的解剖学运动范围。我们显示,肌小节长度在肌肉的小区域内以及在整个TA的不同部位上都有很大变化。而且,随着肌肉的延长,肌节的伸长在整个肌肉上是不均匀的,最高的肌节伸展发生在肌腱末端附近。我们得出结论,从肌肉小区域测得的肌节长度得出的肌肉力学可能无法很好地代表整个肌的肌节长度和相关功能特性。

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