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首页> 外文期刊>Journal of Biomechanics >The effect of attentional focus on local dynamic stability during a repetitive spine flexion task
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The effect of attentional focus on local dynamic stability during a repetitive spine flexion task

机译:注意力焦点对重复脊柱屈曲任务期间局部动态稳定性的影响

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The association between low back pain and spine movement control suggests that it is important to reliably quantify movement behavior. One method to characterize spine movement behavior is to measure the local dynamic stability (LDS) of spine movement during a repetitive flexion task in which a participant is asked to touch multiple targets repetitively. Within the literature, it has been well established that an individual’s focus of attention (FOA) can modulate their neuromuscular control and affect task performance. The goal of this project was to examine the unknown effect of FOA on LDS measurements and timing error during a repetitive spine flexion task that is commonly used to assess movement control. Fourteen healthy adults (7 male) were instructed to touch two targets (shoulder height and knee height) to the beat of a metronome (4?s/cycle) for 35 consecutive cycles. They completed this task under internal (focus on trunk movement) and external (focus on targets) FOA conditions. Motion capture data of the trunk and sacrum were collected at 120?Hz. The lumbar spine angle was defined as the orientation of the trunk relative to the pelvis. The local divergence exponent (λmax) was calculated from the sum of squares of the 3-dimensional spine angle. Timing error was calculated as the time difference between target touches and metronome beats. Changing an individual’s FOA had no effect on λmaxcalculations or timing error. Although clear task instructions are important, it is not essential to control for FOA during this movement assessment protocol.
机译:低腰疼痛和脊柱运动控制之间的关联表明,重要的是可靠地量化运动行为。表征脊柱运动行为的一种方法是测量在重复屈曲任务期间测量脊柱运动的局部动态稳定性(LDS),其中要求参与者重复触摸多个目标。在文献中,已经确定,个人的注意力(FOA)的焦点可以调节它们的神经肌肉控制并影响任务性能。该项目的目标是在常用于评估运动控制的重复脊柱屈曲任务期间检查FOA对LDS测量和定时误差的未知效果。指示十四个健康的成年人(7只男性)触摸两个目标(肩部高度和膝盖高度)到节拍器的节拍(4?S /循环)的35个连续周期。他们在内部完成了这项任务(专注于躯干运动)和外部(专注于目标)FOA条件。躯干和骶骨的运动捕获数据在120赫兹收集。腰椎角被定义为树干相对于骨盆的方向。根据三维脊柱角度的平方和计算局部发散指数(λmax)。定时错误计算为目标触摸和节拍器节拍之间的时间差。更改个人的FOA对λmaxcalculations或定时误差没有影响。虽然明确的任务说明很重要,但在此运动评估协议期间控制FOA是必不可少的。

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