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使用经颅磁刺激测量人体膝关节伸肌的自主激活。

Voluntary activation of human knee extensors measured using transcranial magnetic stimulation.

作者信息

Goodall S, Romer L M, Ross E Z

机构信息

Centre for Sports Medicine and Human Performance, Brunel University, Uxbridge, UK.

出版信息

Exp Physiol. 2009 Sep;94(9):995-1004. doi: 10.1113/expphysiol.2009.047902. Epub 2009 Jun 26.

Abstract

The aim of this study was to determine the applicability and reliability of a transcranial magnetic stimulation twitch interpolation technique for measuring voluntary activation of a lower limb muscle group. Cortical voluntary activation of the knee extensors was determined in nine healthy men on two separate visits by measuring superimposed twitch torques evoked by transcranial magnetic stimulation during isometric knee extensions of varying intensity. Superimposed twitch amplitude decreased linearly with increasing voluntary torque between 50 and 100% of mean maximal torque, allowing estimation of resting twitch amplitude and subsequent calculation of voluntary activation. There were no systematic differences for maximal voluntary activation within day (mean +/- s.d. 90.9 +/- 6.2 versus 90.7 +/- 5.9%; P = 0.98) or between days (90.8 +/- 6.0 versus 91.2 +/- 5.7%; P = 0.92). Systematic bias and random error components of the 95% limits of agreement were 0.23 and 9.3% within day versus 0.38 and 7.5% between days. Voluntary activation was also determined immediately after a 2 min maximal voluntary isometric contraction; in four of these subjects, voluntary activation was determined 30 min after the sustained contraction. Immediately after the sustained isometric contraction, maximal voluntary activation was reduced from 91.2 +/- 5.7 to 74.2 +/- 12.0% (P < 0.001), indicating supraspinal fatigue. After 30 min, voluntary activation had recovered to 85.4 +/- 8.8% (P = 0.39 versus baseline). These results demonstrate that transcranial magnetic stimulation enables reliable measurement of maximal voluntary activation and assessment of supraspinal fatigue of the knee extensors.

摘要

本研究的目的是确定经颅磁刺激抽搐插值技术在测量下肢肌肉群自主激活方面的适用性和可靠性。在两次单独的访视中,通过测量不同强度等长膝关节伸展过程中经颅磁刺激诱发的叠加抽搐扭矩,确定了9名健康男性膝关节伸肌的皮质自主激活情况。叠加抽搐幅度在平均最大扭矩的50%至100%之间随自主扭矩增加呈线性下降,从而可以估计静息抽搐幅度并随后计算自主激活情况。日内最大自主激活无系统差异(平均值±标准差为90.9±6.2%对90.7±5.9%;P = 0.98),日间也无差异(90.8±6.0%对91.2±5.7%;P = 0.92)。95%一致性界限的系统偏差和随机误差分量在日内分别为0.23和9.3%,日间分别为0.38和7.5%。在进行2分钟最大自主等长收缩后立即测定自主激活情况;在其中4名受试者中,在持续收缩30分钟后测定自主激活情况。持续等长收缩后立即测定,最大自主激活从91.2±5.7%降至74.2±12.0%(P < 0.001),表明脊髓上疲劳。30分钟后,自主激活恢复至85.4±8.8%(与基线相比P = 0.39)。这些结果表明,经颅磁刺激能够可靠地测量最大自主激活并评估膝关节伸肌的脊髓上疲劳。

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