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在不受约束的地面行走中,传入对运动肌肉活动的贡献:对小腿三头肌肌束的分析。

Afferent contribution to locomotor muscle activity during unconstrained overground human walking: an analysis of triceps surae muscle fascicles.

机构信息

Center for Sensory-Motor Interaction, Department of Health Science and Technology, Aalborg University, Fredrik Bajers Vej 7D, DK-9220 Aalborg, Denmark.

出版信息

J Neurophysiol. 2010 Mar;103(3):1262-74. doi: 10.1152/jn.00852.2009. Epub 2009 Dec 23.

Abstract

Plantar flexor series elasticity can be used to dissociate muscle-fascicle and muscle-tendon behavior and thus afferent feedback during human walking. We used electromyography (EMG) and high-speed ultrasonography concomitantly to monitor muscle activity and muscle fascicle behavior in 19 healthy volunteers as they walked across a platform. On random trials, the platform was dropped (8 cm, 0.9 g acceleration) or held at a small inclination (up to +/-3 degrees in the parasagittal plane) with respect to level ground. Dropping the platform in the mid and late phases of stance produced a depression in the soleus muscle activity with an onset latency of about 50 ms. The reduction in ground reaction force also unloaded the plantar flexor muscles. The soleus muscle fascicles shortened with a minimum delay of 14 ms. Small variations in platform inclination produced significant changes in triceps surae muscle activity; EMG increased when stepping on an inclined surface and decreased when stepping on a declined surface. This sensory modulation of the locomotor output was concomitant with changes in triceps surae muscle fascicle and gastrocnemius tendon length. Assuming that afferent activity correlates to these mechanical changes, our results indicate that within-step sensory feedback from the plantar flexor muscles automatically adjusts muscle activity to compensate for small ground irregularities. The delayed onset of muscle fascicle movement after dropping the platform indicates that at least the initial part of the soleus depression is more likely mediated by a decrease in force feedback than length-sensitive feedback, indicating that force feedback contributes to the locomotor activity in human walking.

摘要

足底屈肌串联弹性可用于分离肌肉-肌束和肌肉-肌腱的行为,从而在人体行走时影响传入反馈。我们使用肌电图(EMG)和高速超声同时监测 19 名健康志愿者在走过平台时的肌肉活动和肌束行为。在随机试验中,平台会突然下降(8 厘米,0.9g 加速度)或相对于水平地面保持小倾斜(矢状面最多 +/-3 度)。在站立中期和后期突然下降平台会导致比目鱼肌活动出现延迟,潜伏期约为 50ms。地面反作用力的减少也会使跖屈肌卸载。比目鱼肌肌束以最小延迟 14ms 缩短。平台倾斜度的微小变化会显著改变小腿三头肌的活动;当在倾斜表面上行走时,EMG 增加,而当在下降表面上行走时,EMG 减少。这种对运动输出的感觉调节伴随着小腿三头肌肌束和跟腱长度的变化。假设传入活动与这些机械变化相关,我们的结果表明,在步内来自跖屈肌的感觉反馈会自动调整肌肉活动以补偿地面的小不规则。平台下降后肌束运动的延迟起始表明,至少比目鱼肌抑制的初始部分更可能是由力反馈而不是长度敏感反馈介导的,这表明力反馈有助于人类行走的运动活动。

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