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Human soleus sarcomere lengths measured using in vivo microendoscopy at two ankle flexion angles

机译:使用体内微内窥镜在两个脚踝屈曲角度下测量的比目鱼肌肌节长度

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摘要

The forces generated by the soleus muscle play an important role in standing and locomotion. The lengths of the sarcomeres of the soleus affect its force-generating capacity, yet it is unknown how sarcomere lengths in the soleus change as a function of ankle flexion angle. In this study, we used microendoscopy to measure resting sarcomere lengths at 10° plantarflexion and 20° dorsiflexion in 7 healthy individuals. Mean sarcomere lengths at 10° plantarflexion were 2.84±0.09 μm (mean±S.E.M.), near the optimal length for sarcomere force generation. Sarcomere lengths were 3.43±0.09 μm at 20° dorsiflexion, indicating that they were longer than optimal length when the ankle was in dorsiflexion and the muscle was inactive. Our results indicate a smaller sarcomere length difference between two ankle flexion angles compared to estimates from musculoskeletal models and suggest why these models frequently underestimate the force-generating capacity of the soleus.
机译:比目鱼肌产生的力在站立和运动中起重要作用。比目鱼肌肉瘤的长度会影响其产生力的能力,但是还不知道比目鱼肌肌瘤的长度是如何随着踝关节弯曲角度而变化的。在这项研究中,我们使用显微内窥镜在7位健康个体中测量了足底屈曲10°和背屈20°时的休息肌节长度。足底屈曲10°时的平均肌节长度为2.84±0.09μm(平均值±标准误差),接近肌节力产生的最佳长度。在20°背屈时肌节长度为3.43±0.09μm,表明当踝关节背屈且肌肉不活动时,它们的长度比最佳长度长。我们的结果表明,与来自肌肉骨骼模型的估算值相比,两个踝关节屈曲角度之间的肌节长度差异较小,并说明了为什么这些模型经常低估比目鱼肌的力量产生能力。

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