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增强作用通过提高扭矩发展和松弛的速率来增加峰值抽搐扭矩。

Potentiation increases peak twitch torque by enhancing rates of torque development and relaxation.

机构信息

UCT/MRC Research Unit for Exercise Science and Sports Medicine, Department of Human Biology, University of Cape Town, South Africa. ; Faculty of Teacher Education and Sport, Sogn og Fjordane University College, Norway.

出版信息

J Hum Kinet. 2013 Oct 8;38:83-94. doi: 10.2478/hukin-2013-0048. eCollection 2013.

Abstract

The aim of this study was to measure the extent to which potentiation changes in response to an isometric maximal voluntary contraction. Eleven physically active subjects participated in two separate studies. Single stimulus of electrical stimulation of the femoral nerve was used to measure torque at rest in unpotentiated quadriceps muscles (study 1 and 2), and potentiated quadriceps muscles torque in a 10 min period after a 5 s isometric maximal voluntary contraction of the quadriceps muscles (study 1). Additionally, potentiated quadriceps muscles torque was measured every min after a further 10 maximal voluntary contractions repeated every min (study 2). Electrical stimulation repeated several times without previous maximal voluntary contraction showed similar peak twitch torque. Peak twitch torque 4 s after a 5 s maximal voluntary contraction increased by 45±13% (study 1) and by 56±10% (study 2), the rate of torque development by 53±13% and 82±29%, and the rate of relaxation by 50±17% and 59±22%, respectively, but potentiation was lost already two min after a 5 s maximal voluntary contraction. There was a tendency for peak twitch torque to increase for the first five repeated maximal voluntary contractions, suggesting increased potentiation with additional maximal voluntary contractions. Correlations for peak twitch torque vs the rate of torque development and for the rate of relaxation were r(2)= 0.94 and r(2)=0.97. The correlation between peak twitch torque, the rate of torque development and the rate of relaxation suggests that potentiation is due to instantaneous changes in skeletal muscle contractility and relaxation.

摘要

本研究旨在测量在等长最大自主收缩时增强作用的变化程度。11 名体能活跃的受试者参与了两项独立的研究。单次股神经电刺激用于测量未增强的股四头肌在休息时的扭矩(研究 1 和 2),以及在股四头肌进行 5 秒等长最大自主收缩后的 10 分钟内增强的股四头肌扭矩(研究 1)。此外,在进一步进行 10 次最大自主收缩后,每隔 1 分钟测量增强的股四头肌扭矩(研究 2)。在没有先前最大自主收缩的情况下重复多次电刺激显示出相似的峰值 twitch 扭矩。在 5 秒最大自主收缩后 4 秒时,峰值 twitch 扭矩增加了 45±13%(研究 1)和 56±10%(研究 2),扭矩发展速度增加了 53±13%和 82±29%,以及放松速度增加了 50±17%和 59±22%,但在 5 秒最大自主收缩后两分钟增强作用已经消失。在五次重复最大自主收缩的前五次中,峰值 twitch 扭矩有增加的趋势,这表明随着额外的最大自主收缩,增强作用增加。峰值 twitch 扭矩与扭矩发展速度和放松速度之间的相关性 r(2)=0.94 和 r(2)=0.97。峰值 twitch 扭矩、扭矩发展速度和放松速度之间的相关性表明,增强作用是由于骨骼肌收缩和放松的瞬时变化所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb59/3827760/10f5712874ae/jhk-38-83f1.jpg

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