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感觉反馈对人类自主收缩期间比目鱼肌活动的作用。

Contribution of sensory feedback to soleus muscle activity during voluntary contraction in humans.

作者信息

Rasul Aqella, Lorentzen Jakob, Frisk Rasmus Feld, Sinkjær Thomas, Nielsen Jens Bo

机构信息

Department of Neuroscience, University of Copenhagen, Copenhagen, Denmark.

Department of Health Science and Technology. Aalborg University, Denmark.

出版信息

J Neurophysiol. 2022 Apr 1;127(4):1147-1158. doi: 10.1152/jn.00430.2021. Epub 2022 Mar 23.

Abstract

Sensory feedback through spinal interneurons contributes to plantar flexor muscle activity during walking, but it is unknown whether this is also the case during nonlocomotor movements. Here, we explored the effect of temporary reduction of sensory feedback to ankle plantar flexors during voluntary contraction in sitting subjects. Thirteen healthy adults (mean age 32 yr) were seated with the right leg attached to a foot plate which could be moved in dorsi- or plantarflexion direction by a computer-controlled motor. EMG was recorded from the tibialis anterior (TA) and soleus (Sol) muscles. During static plantar flexion, while the plantar flexors were slowly stretched, a sudden plantar flexion caused a decline in Sol EMG at the same latency as the stretch reflex. This decline in EMG activity was still observed when transmission from dorsiflexors was blocked. It disappeared when transmission from ankle plantar flexors was also blocked. The same quick plantarflexion failed to produce a decline in EMG activity at the latency of the stretch reflex in the absence of slow stretch of the plantar flexors. Instead, a decline in EMG activity was observed 15-20 ms later. This decline disappeared following block of transmission from antagonists, suggesting that reciprocal inhibition was involved. These findings show that unload of ankle plantar flexors does not cause a similar drop in Sol EMG during voluntary contraction as during walking. This implies that sensory feedback through spinal interneurons only contributes little to the neural drive to plantar flexor muscles during human voluntary contraction in sitting subjects. Sensory feedback through spinal reflex pathways makes only a minor contribution to neural drive to muscles during voluntary ankle plantar flexion. This differs distinctly from observations during walking and suggests that the neural drive to ankle plantar flexors during voluntary contraction do not rely on sensory feedback through similar spinal interneuronal networks as during walking. In line with animal studies this suggests that the integration of sensory feedback in CNS is task specific.

摘要

通过脊髓中间神经元的感觉反馈有助于行走过程中跖屈肌的活动,但在非运动性运动期间是否也是如此尚不清楚。在此,我们探讨了在坐位受试者自愿收缩期间暂时减少对踝跖屈肌感觉反馈的影响。13名健康成年人(平均年龄32岁)坐着,右腿连接到一个脚板上,该脚板可由计算机控制的电机在背屈或跖屈方向移动。从胫骨前肌(TA)和比目鱼肌(Sol)记录肌电图。在静态跖屈期间,当跖屈肌缓慢伸展时,突然的跖屈会导致Sol肌电图在与牵张反射相同的潜伏期下降。当背屈肌的传入被阻断时,仍可观察到肌电图活动的这种下降。当踝跖屈肌的传入也被阻断时,这种下降消失。在没有跖屈肌缓慢伸展的情况下,相同的快速跖屈未能在牵张反射的潜伏期引起肌电图活动下降。相反,在15 - 20毫秒后观察到肌电图活动下降。在阻断拮抗剂的传入后,这种下降消失,表明涉及交互抑制。这些发现表明,在自愿收缩期间,踝跖屈肌的卸载不会像行走期间那样导致Sol肌电图出现类似的下降。这意味着在坐位受试者的人类自愿收缩期间通过脊髓中间神经元的感觉反馈对跖屈肌的神经驱动贡献很小。在自愿踝跖屈期间,通过脊髓反射通路的感觉反馈对肌肉的神经驱动仅起微小作用。这与行走期间的观察结果明显不同,表明在自愿收缩期间对踝跖屈肌的神经驱动不依赖于与行走期间类似的脊髓中间神经元网络的感觉反馈。与动物研究一致,这表明中枢神经系统中感觉反馈的整合是任务特异性的。

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