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将抽搐分析作为电刺激期间运动单位激活的一种方法。

Twitch analysis as an approach to motor unit activation during electrical stimulation.

作者信息

Heyters M, Carpentier A, Duchateau J, Hainaut K

机构信息

Laboratory of Biology, Université Libre de Bruxelles, Belgium.

出版信息

Can J Appl Physiol. 1994 Dec;19(4):451-61. doi: 10.1139/h94-037.

Abstract

The mechanical twitch in response to increasing electrical stimulus intensity, delivered both over the motor point and motor nerve, was recorded in the first dorsal interosseous (FDI) and the adductor pollicis (AP), and only over the motor point in the soleus (Sol), lateral (LG), and medial (MG) gastrocnemius muscles of human subjects. The relationship between intensity of electrical stimulation (ES) and twitch torque showed a positive linear regression in all muscles. In the FDI and AP the relationship was not significantly different when ES was applied at the motor point or over the motor nerve. At small intensities of activation, ES induced larger twitch torques in the MG and LG, which contain a roughly equal proportion of slow and fast motor units (MUs) compared to the Sol, which is composed mainly of slow type fibres. Moreover, the relationship between ES intensity and twitch time-to-peak is best fitted in all muscles by a power curve that shows a greater twitch time-to-peak range in its initial part for muscles containing a larger proportion of fast MUs (LG, MG) than for muscles mainly composed of slow MUs (Sol). In conclusion, these results induced by ES at the motor point and/or over the motor nerve confirm the concept of a reversed sequence of MU activation, as compared to voluntary contractions, and document this viewpoint in muscles of different function and composition. The reversed sequence of MU activation is more clearly evident during motor point ES.

摘要

在人类受试者的第一背侧骨间肌(FDI)和拇收肌(AP)中,记录了对在运动点和运动神经上施加的逐渐增加的电刺激强度的机械抽搐反应,而在比目鱼肌(Sol)、外侧腓肠肌(LG)和内侧腓肠肌(MG)中,仅在运动点记录到了该反应。电刺激(ES)强度与抽搐扭矩之间的关系在所有肌肉中均呈现正线性回归。在FDI和AP中,当在运动点或运动神经上施加ES时,两者之间的关系无显著差异。在激活强度较小时,ES在MG和LG中诱发的抽搐扭矩更大,与主要由慢肌纤维组成的Sol相比,MG和LG中慢肌运动单位和快肌运动单位的比例大致相等。此外,ES强度与抽搐峰值时间之间的关系在所有肌肉中均最适合用幂曲线拟合,该曲线表明,对于含有较大比例快肌运动单位的肌肉(LG、MG),其初始部分的抽搐峰值时间范围比主要由慢肌运动单位组成的肌肉(Sol)更大。总之,这些在运动点和/或运动神经上施加ES所产生的结果证实了与随意收缩相比运动单位激活顺序相反的概念,并在不同功能和组成的肌肉中证明了这一观点。运动单位激活顺序的反转在运动点ES期间更为明显。

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