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直立姿势下足部固有肌中肌梭传入纤维及足底触觉传入纤维的放电特性。

Firing properties of muscle spindle afferents in the intrinsic foot muscles and tactile afferents from the sole of the foot during upright stance.

作者信息

Knellwolf Thomas P, Burton Alex, Hamman Elie, Macefield Vaughan G

机构信息

Department of Integrative Physiology, School of Medicine, Western Sydney University, Sydney, New South Wales, Australia.

Human Autonomic Neurophysiology Lab, Neuroscience Research Institute, Sydney, New South Wales, Australia.

出版信息

Exp Physiol. 2025 Oct;110(10):1492-1510. doi: 10.1113/EP092348. Epub 2025 Apr 10.

Abstract

We review our approach for undertaking microelectrode recordings from the posterior tibial nerve at the ankle, which has allowed us to identify, for the first time, the firing properties of muscle spindle endings in the intrinsic muscles of the foot and of cutaneous mechanoreceptors in the sole during unsupported standing. The responsiveness of muscle spindles in the short muscles of the foot to stretch and related joint movements was similar to that of spindles located in the intrinsic muscles of the hand. Only 27% were spontaneously active in the unloaded condition, whereas 50% were active during unsupported free standing. Moreover, in the latter condition firing rates of 67% of the endings were correlated with changes of the centre of pressure (CoP), primarily (88%) along the anteroposterior axis. The firing of cutaneous afferents supplying the sole of the foot in unsupported free standing depended on the receptor type and location of the receptive field: fast-adapting type I and slowly adapting type I afferents responded transiently during contact with the substrate on standing and to spontaneous postural adjustments, whereas the tonic firing of slowly adapting type II endings encoded fluctuations in the CoP. We conclude that muscle spindle endings in the intrinsic muscles of the foot are recruited or increase their spontaneous discharge on standing and can faithfully encode changes in CoP during spontaneous or evoked postural sway, a function shared by slowly adapting type II afferents in the sole. These data emphasize the important contributions of sensory sources in the foot to maintaining and responding to perturbations in upright posture.

摘要

我们回顾了在踝关节处对胫后神经进行微电极记录的方法,该方法使我们首次能够识别在无支撑站立期间足部固有肌肉中肌梭末梢以及足底皮肤机械感受器的放电特性。足部短肌中的肌梭对拉伸及相关关节运动的反应性与手部固有肌肉中的肌梭相似。在无负荷状态下,只有27%的肌梭自发活动,而在无支撑自由站立期间,这一比例为50%。此外,在后一种状态下,67%的末梢放电频率与压力中心(CoP)的变化相关,主要是(88%)沿前后轴的变化。在无支撑自由站立时,供应足底的皮肤传入神经的放电取决于感受器类型和感受野的位置:快速适应I型和缓慢适应I型传入神经在站立时与地面接触以及自发姿势调整期间会短暂反应,而缓慢适应II型末梢的持续性放电则编码了CoP的波动。我们得出结论,足部固有肌肉中的肌梭末梢在站立时被募集或增加其自发放电,并且在自发或诱发的姿势摆动期间能够忠实地编码CoP的变化,这是足底缓慢适应II型传入神经所共有的功能。这些数据强调了足部感觉源对维持直立姿势和应对干扰的重要贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02d0/12486321/9a200fa95d68/EPH-110-1492-g007.jpg

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