首页> 外文期刊>Journal of Biomechanics >Whole muscle length-tension relationships are accurately modeled as scaled sarcomeres in rabbit hindlimb muscles.
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Whole muscle length-tension relationships are accurately modeled as scaled sarcomeres in rabbit hindlimb muscles.

机译:完整的肌肉长度-张力关系被精确建模为兔子后肢肌肉中的规模肉瘤。

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摘要

An a priori model of the whole active muscle length-tension relationship was constructed utilizing only myofilament length and serial sarcomere number for rabbit tibialis anterior (TA), extensor digitorum longus (EDL), and extensor digitorum II (EDII) muscles. Passive tension was modeled with a two-element Hill-type model. Experimental length-tension relations were then measured for each of these muscles and compared to predictions. The model was able to accurately capture the active-tension characteristics of experimentally-measured data for all muscles (ICC=0.88 +/- 0.03). Despite their varied architecture, no differences in predicted versus experimental correlations were observed among muscles. In addition, the model demonstrated that excursion, quantified by full-width-at-half-maximum (FWHM) of the active length-tension relationship, scaled linearly (slope=0.68) with normalized muscle fiber length. Experimental and theoretical FWHM values agreed well with an intraclass correlation coefficient of 0.99 (p<0.001). In contrast to active tension, the passive tension model deviated from experimentally-measured values and thus, was not an accurate predictor of passive tension (ICC=0.70 +/- 0.07). These data demonstrate that modeling muscle as a scaled sarcomere provides accurate active functional but not passive functional predictions for rabbit TA, EDL, and EDII muscles and call into question the need for more complex modeling assumptions often proposed.
机译:仅利用兔胫前肌(TA),趾长伸肌(EDL)和趾长伸肌II(EDII)肌肉的肌丝长度和系列肌节数,构建了整个活动肌肉长度-张力关系的先验模型。被动张力采用两元素希尔型模型进行建模。然后测量这些肌肉中每条肌肉的实验长度-张力关系,并将其与预测值进行比较。该模型能够准确捕获所有肌肉的实验测量数据的主动张力特征(ICC = 0.88 +/- 0.03)。尽管它们的结构各异,但在肌肉之间未观察到预测相关性与实验相关性的差异。此外,该模型表明,通过活动的长度-张力关系的半值最大宽度(FWHM)量化的偏移与归一化的肌肉纤维长度成线性比例(斜率= 0.68)。实验和理论FWHM值与类内相关系数为0.99(p <0.001)吻合良好。与主动张力相反,被动张力模型偏离了实验测量值,因此不是被动张力的准确预测器(ICC = 0.70 +/- 0.07)。这些数据表明,将肌肉建模为成比例的肌节肌可以为兔TA,EDL和EDII肌肉提供准确的主动功能预测,但不能提供被动功能预测,这使人们经常提出对更复杂的建模假设的需求提出了质疑。

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