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首页> 外文期刊>Clinical biomechanics >Relationships of EMG to effort in the trunk under isometric conditions: force-increasing and decreasing effects and temporal delays.
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Relationships of EMG to effort in the trunk under isometric conditions: force-increasing and decreasing effects and temporal delays.

机译:在等轴测条件下,肌电图与躯干力量的关系:作用力的增加和减少以及时间的延迟。

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BACKGROUND: Electromyograms are used in increasingly sophisticated biomechanical analyses to estimate forces within the trunk to prevent and evaluate painful spinal conditions. However, even under nominally isometric conditions the relationship between EMG and effort is complex. This study quantified influences of pulling direction, increasing versus decreasing effort and electromechanical delay on the EMG/effort relationships for principal lower trunk muscle groups in isometric pulling tasks, to determine whether the observed differences between increasing versus decreasing effort relationships were consistent with electromechanical delay or activation differences. METHODS: Twenty-three healthy subjects (15 male, 8 female; mean age 32 years; mean bodymass 74.5 kg) each stood in an apparatus to stabilize the pelvis and performed ramped isometric efforts with a harness around the thorax connected to each of a series of five anchor points on the wall, for angles of pull at each 45 degrees increment from 0 degrees to 180 degrees to the anterior direction. A load cell recorded the generated force for a 5 s timed increase up to a voluntary maximum, a 1s 'dwell', and a 5 s relaxation back to zero effort. EMG signals were recorded via electrodes (surface, except indwelling for multifidus) from right and left rectus abdominis, internal and external obliques, longissimus, iliocostalis and L2 and L4 level multifidus. EMG signals were rectified with a 250 ms root-mean-square moving average filter. Effort-increasing and effort-decreasing sections of recordings were analyzed separately. FINDINGS: The EMG/effort relationship had a statistically significantly greater gradient as the effort was increasing than when decreasing for 28 of 70 muscle-angle permutations. This difference in gradient was found to explain a significant part of the apparent lag between effort generated and EMG signal that averaged between 261 and 658 ms before and between 31 and 196 ms for different muscles after the slope difference was taken intoaccount. INTERPRETATION: The findings were consistent with the notion that the motor unit recruitment differs in increasing versus decreasing isometric efforts, probably because of a small stretching of the muscle as its tension increases. The residual temporal delay was thought to represent electromechanical delay.
机译:背景:肌电图用于越来越复杂的生物力学分析中,以估算躯干内的力量,以预防和评估疼痛的脊柱疾病。然而,即使在名义上等距的条件下,肌电图和努力之间的关系也是复杂的。这项研究量化了拉力方向,增加与减少的努力以及机电延迟对等距拉动任务中主要下躯干肌群的肌电图/努力关系的影响,以确定观察到的增加与减少的努力关系之间的差异是否与机电延迟一致或激活差异。方法:二十三名健康受试者(男15例,女8例;平均年龄32岁;平均体重74.5公斤)各站立在一个稳定骨盆的器械中,并通过围绕每个系列的胸部周围的安全带进行等距倾斜运动在墙壁上的五个锚定点中,对于每个45度的拉力角从0度增加到与前方向的180度。称重传感器记录所产生的力,持续5 s的时间增加直至达到自愿最大值,出现1 s的“停顿”,并释放5 s归零。 EMG信号通过电极(表面,除了多裂留置处)从右和左腹直肌,内斜肌和外斜肌,最长肌,i肌以及L2和L4级多裂肌记录下来。使用250 ms均方根移动平均滤波器对EMG信号进行校正。分别对记录的省力和省力部分进行了分析。研究结果表明,随着肌力的增加,肌电图/努力的关系在梯度上具有统计学上显着更大的梯度,而在70个肌肉角度排列中,有28个肌电图与下降之间的梯度却明显减小。发现梯度的这种差异可以解释产生的力和肌电信号之间的表观延迟的重要部分,在考虑坡度差异之后,对于不同的肌肉,平均肌电信号平均在261到658毫秒之间,在31到196毫秒之间。解释:这些发现与以下观点相一致:运动单位的募集在等距努力的增加与减少之间是不同的,这可能是由于肌肉在其张力增加时伸展很小。残余的时间延迟被认为代表机电延迟。

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