【24h】

Influence of stimulus intensity on electromechanical delay and its mechanisms

机译:刺激强度对机电延迟的影响及其机理

获取原文
获取原文并翻译 | 示例
           

摘要

Electromechanical delay (EMD) is the time lag between muscle activation and force development. Using very high frame rate ultrasound, both electrochemical and mechanical processes involved in EMD can be assessed. Percutaneous electrical stimulations at submaximal intensity are often used to stimulate a specific target muscle. The aim of this study was to determine whether stimulus intensity alters the delay between stimulation and the onset of muscle fascicules motion (Dm), the onset of myotendinous junction motion (Dt), and force production (EMD). Ten participants underwent two electrically evoked contractions, with the probe maintained either the biceps brachii muscle belly or the distal myotendinous junction of the biceps brachii, for six stimulus intensities (30%, 50%, 70%, 90%, 110% and 130% of the lowest intensity inducing the maximal involuntary force production, Imax). In addition, inter-day reliability was tested in nine participants at both 70% and 90% of Imax. Dm, Dt and EMD were significantly longer (p<. 0.001) at very low (30% and 50% of Imax) compared to higher intensities (70%, 90%, 110% and 130% of Imax). Inter-day reliability of EMD, Dm, and Dt was good (coefficient of variation ranged from 6.8% to 12.5%, i.e. SEM lower than 0.79. ms). These results indicate that the stimulus intensity needs to be standardized to perform longitudinal evaluation and/or to make between-subject comparisons.
机译:机电延迟(EMD)是肌肉激活与力量发展之间的时间差。使用很高的帧频超声,可以评估EMD中涉及的电化学和机械过程。次最大强度的经皮电刺激通常用于刺激特定的目标肌肉。这项研究的目的是确定刺激强度是否改变刺激与肌肉筋膜运动(Dm),肌腱连接运动(Dt)和力产生(EMD)发作之间的延迟。十名参与者经历了两次电诱发的收缩,探头保持肱二头肌肱二头肌肌或肱二头肌远端肌腱结,对六种刺激强度(30%,50%,70%,90%,110%和130%导致最大非自愿力量产生的最低强度Imax)。此外,在Imax的70%和90%的9位参与者中测试了日间可靠性。与非常高的强度(Imax的70%,90%,110%和130%)相比,在非常低的Imax(30%和50%)下,Dm,Dt和EMD明显更长(p <.0.001)。 EMD,Dm和Dt的日间可靠性良好(变异系数范围为6.8%至12.5%,即SEM低于0.79。ms)。这些结果表明,刺激强度需要标准化以进行纵向评估和/或进行受试者间比较。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号