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通过电刺激随机激活运动单位。

Random motor unit activation by electrostimulation.

作者信息

Jubeau M, Gondin J, Martin A, Sartorio A, Maffiuletti N A

机构信息

Inserm U887, Faculté des Sciences du Sport, Dijon, France.

出版信息

Int J Sports Med. 2007 Nov;28(11):901-4. doi: 10.1055/s-2007-965075. Epub 2007 May 24.

DOI:10.1055/s-2007-965075
PMID:17525881
Abstract

Whether the involvement of motor units is different between surface neuromuscular electrostimulation and voluntary activation remains an unresolved issue. The aim of this pilot study was to verify if motor unit activation during electrostimulation is nonselective/random (i.e., without obvious sequencing related to fibre type), as recently suggested by Gregory and Bickel [6]. Sixteen healthy men randomly performed submaximal isometric contractions (10-s duration) of the quadriceps femoris muscle at 20, 40 and 60 % of maximal voluntary torque under both stimulated and voluntary conditions. During the contractions, paired stimuli were delivered to the femoral nerve (twitch interpolation technique) and the characteristics of the superimposed doublet were compared between the two conditions. For each torque level, time-to-peak torque was significantly longer (p range = 0.05 - 0.0002) during electrostimulation compared to voluntary contractions. Moreover, time-to-peak torque during voluntary trials decreased significantly when increasing the torque level from 20 to 60 % of maximal voluntary torque (p range = 0.03 - 0.0001), whereas it was unchanged during electrostimulation. In conclusion, over-the-muscle electrostimulation would neither result in motor unit recruitment according to Henneman's size principle nor would it result in a reversal in voluntary recruitment order. During electrostimulation, muscle fibres are activated without obvious sequencing related to fibre type.

摘要

表面神经肌肉电刺激和自主激活时运动单位的参与情况是否不同仍是一个未解决的问题。这项初步研究的目的是验证电刺激期间运动单位的激活是否是非选择性/随机的(即,没有与纤维类型相关的明显顺序),正如Gregory和Bickel [6]最近所提出的那样。16名健康男性在受刺激和自主条件下,分别以最大自主扭矩的20%、40%和60%进行股四头肌的次最大等长收缩(持续10秒)。在收缩过程中,向股神经施加成对刺激(抽搐插值技术),并比较两种条件下叠加双峰的特征。对于每个扭矩水平,与自主收缩相比,电刺激期间达到峰值扭矩的时间明显更长(p范围 = 0.05 - 0.0002)。此外,当自主试验中的扭矩水平从最大自主扭矩的20%增加到60%时,达到峰值扭矩的时间显著缩短(p范围 = 0.03 - 0.0001),而在电刺激期间则保持不变。总之,肌肉表面电刺激既不会根据亨内曼大小原则导致运动单位募集,也不会导致自主募集顺序的逆转。在电刺激期间,肌肉纤维的激活没有与纤维类型相关的明显顺序。

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