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全身振动对中枢和外周心血管系统的影响。

The influence of whole body vibration on the central and peripheral cardiovascular system.

作者信息

Robbins Dan, Yoganathan Priya, Goss-Sampson Mark

机构信息

Centre for Sports Science and Human Performance, University of Greenwich, Chatham, UK.

出版信息

Clin Physiol Funct Imaging. 2014 Sep;34(5):364-9. doi: 10.1111/cpf.12103. Epub 2013 Nov 17.

Abstract

The purpose of this study was to investigate the physiological changes of the cardiovascular system in response to whole body vibration during quiet standing and identify whether there is a greater influence on the central or peripheral cardiovascular system. Twenty healthy participants (12 male and 8 female) were assessed over two separate testing sessions for changes in peripheral skin temperature, peripheral venous function, blood flow velocity in the dorsalis pedis artery, blood pressure and heart rate during quiet standing with 40 Hz 1·9 mm synchronous vibration. Vibration exposure totalled 5 min in 1 min increments with 5 min recovery during each testing session. There were no significant changes in heart rate, blood pressure or peripheral skin temperature. Significant results were obtained for blood flow velocity with increases from 0·5 + 0·2 cm·s(-1) at baseline to 1 + 0·2 cm·s(-1) during vibration, returning to baseline levels during the recovery period. Due to the absence of changes in heart rate, blood pressure or lower leg and foot temperature, the change in blood flow velocity can be attributed to changes in peripheral vascular function. The results suggest a high level of sensitivity of the peripheral vascular system to vibration exposure; therefore, further studies should be completed to ascertain the physiological mechanisms underlying the effects of vibration on the peripheral vascular system.

摘要

本研究的目的是调查安静站立期间全身振动对心血管系统的生理变化,并确定其对中枢或外周心血管系统是否有更大影响。20名健康参与者(12名男性和8名女性)在两个独立的测试环节中接受评估,以检测在40赫兹1.9毫米同步振动的安静站立过程中,外周皮肤温度、外周静脉功能、足背动脉血流速度、血压和心率的变化。每次测试环节中,振动暴露总计5分钟,以1分钟为增量,随后有5分钟的恢复期。心率、血压或外周皮肤温度均无显著变化。血流速度获得显著结果,从基线时的0.5±0.2厘米·秒-1增加到振动期间的1±0.2厘米·秒-1,并在恢复期恢复到基线水平。由于心率、血压或小腿和足部温度没有变化,血流速度的变化可归因于外周血管功能的变化。结果表明外周血管系统对振动暴露高度敏感;因此,应完成进一步研究以确定振动对外周血管系统影响的生理机制。

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