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在被动条件下,人类拇指和食指肌肉之间的最小力传递。

Minimal force transmission between human thumb and index finger muscles under passive conditions.

机构信息

School of Medical Sciences, Faculty of Medicine and Health, University of Sydney, Sydney, NSW, Australia.

Neuroscience Research Australia (NeuRA), Randwick, NSW, Australia.

出版信息

PLoS One. 2019 Feb 15;14(2):e0212496. doi: 10.1371/journal.pone.0212496. eCollection 2019.

Abstract

It has been hypothesized that force can be transmitted between adjacent muscles. Intermuscle force transmission violates the assumption that muscles act in mechanical isolation, and implies that predictions from biomechanical models are in error due to mechanical interactions between muscles, but the functional relevance of intermuscle force transmission is unclear. To investigate intermuscle force transmission between human flexor pollicis longus and the index finger part of flexor digitorum profundus, we compared finger flexion force produced by passive thumb flexion after one of three conditioning protocols: passive thumb flexion-extension cycling, thumb flexion maximal voluntary contraction (MVC), and thumb extension stretch. Finger flexion force increased after all three conditions. Compared to passive thumb flexion-extension cycling, change in finger flexion force was less after thumb extension stretch (mean difference 0.028 N, 95% CI 0.005 to 0.051 N), but not after thumb flexion MVC (0.007 N, 95% CI -0.020 to 0.033 N). As muscle conditioning changed finger flexion force produced by passive thumb flexion, the change in force is likely due to intermuscle force transmission. Thus, intermuscle force transmission resulting from passive stretch of an adjacent muscle is probably small enough to be ignored.

摘要

有人假设力可以在相邻的肌肉之间传递。肌肉间的力传递违反了肌肉在机械上相互隔离的假设,这意味着由于肌肉之间的力学相互作用,生物力学模型的预测是错误的,但肌肉间力传递的功能相关性尚不清楚。为了研究人类拇指屈肌和食指深屈肌之间的肌肉间力传递,我们比较了三种预适应方案后被动拇指屈-伸循环、拇指屈肌最大自主收缩(MVC)和拇指伸肌拉伸时产生的手指屈肌力。所有三种情况后手指屈肌力都增加了。与被动拇指屈-伸循环相比,拇指伸肌拉伸后手指屈肌力的变化较小(平均差异 0.028 N,95%CI 0.005 至 0.051 N),但拇指屈肌 MVC 后则没有(0.007 N,95%CI -0.020 至 0.033 N)。由于肌肉预适应改变了被动拇指屈肌产生的手指屈肌力,力的变化可能是由于肌肉间力传递所致。因此,相邻肌肉被动拉伸引起的肌肉间力传递可能小到可以忽略不计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a8e/6377133/e346370457be/pone.0212496.g001.jpg

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