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跖屈肌对全身振动的神经肌肉反应。

Neuromuscular responses of the plantar flexors to whole-body vibration.

作者信息

Harwood B, Scherer J, Brown R E, Cornett K M D, Kenno K A, Jakobi J M

机构信息

Health and Exercise Science, University of British Columbia Okanagan, Kelowna, BC, Canada.

Human Kinetics, University of Windsor, Windsor, ON, Canada.

出版信息

Scand J Med Sci Sports. 2017 Dec;27(12):1569-1575. doi: 10.1111/sms.12803. Epub 2016 Dec 29.

DOI:10.1111/sms.12803
PMID:28033657
Abstract

Enhanced physical performance following whole-body vibration (WBV) has been attributed to increased muscle activity; however, few studies have measured the mechanisms underlying these changes. The objective of this study was to measure the responsiveness of the Ia pathway as well as contractile properties in 16 young adults (24±2 years, eight men, eight women) following repeated bouts of acute WBV (45 Hz, 2 mm). Hoffman reflexes (H-reflex), compound muscle action potentials (M-wave), and twitch contractile properties were measured prior to and immediately following five 1-minute WBV exposures, and at 3, 5, 10, and 20 minute post-WBV. M-wave and H-reflex amplitudes decreased by 8% (P<.001) and by 46% (P<.05), respectively, whereas peak twitch torque decreased by 9% (P<.01) and rate of twitch torque development slowed 8% (P<.05). Percent voluntary activation and maximal plantar flexor torque were unchanged as a consequence of WBV (P>.05). In response to acute WBV, the root mean square of the soleus electromyography signal (EMG ) increased by 8%, while the EMG of the lateral gastrocnemius increased by 3% (P<.05). These data indicate that the responsiveness of the Ia pathway is diminished and contractile function is impaired immediately following WBV, and that the neural mechanisms underlying improved performance following WBV lie in alternative hypotheses possibly involving spindle disfacilitation or Golgi afferent modulation.

摘要

全身振动(WBV)后身体机能增强被认为是肌肉活动增加所致;然而,很少有研究测量这些变化背后的机制。本研究的目的是测量16名年轻成年人(24±2岁,8名男性,8名女性)在反复进行急性WBV(45Hz,2mm)后Ia通路的反应性以及收缩特性。在五次1分钟的WBV暴露之前、暴露后即刻以及暴露后3、5、10和20分钟测量霍夫曼反射(H反射)、复合肌肉动作电位(M波)和抽搐收缩特性。M波和H反射幅度分别下降了8%(P<.001)和46%(P<.05),而抽搐峰值扭矩下降了9%(P<.01),抽搐扭矩发展速率减慢了8%(P<.05)。WBV后,自愿激活百分比和最大跖屈扭矩没有变化(P>.05)。对急性WBV的反应中,比目鱼肌肌电图信号(EMG)的均方根增加了8%,而外侧腓肠肌的EMG增加了3%(P<.05)。这些数据表明,WBV后即刻Ia通路的反应性降低且收缩功能受损,WBV后机能改善的神经机制可能在于涉及纺锤体去易化或高尔基传入调制的其他假说。

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