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Interactions of touch feedback with muscle vibration and galvanic vestibular stimulation in the control of trunk posture

机译:触摸反馈与肌肉振动和电流前庭刺激在躯干姿势控制中的相互作用

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This study investigated the effect of touch on trunk sway in a seated position. Two touch conditions were included: touching an object with the index finger of the right hand (hand-touch) and maintaining contact with an object at the level of the spine of T10 on the mid back (back-touch). In both touch conditions, the exerted force stayed below 2. N. Furthermore, the interaction of touch with paraspinal muscle vibration and galvanic vestibular stimulation (GVS) was studied. Thirteen healthy subjects with no history of low-back pain participated in this study. Subjects sat on a stool and trunk sway was measured with a motion capture system tracking a cluster marker on the trunk. Subjects performed a total of 12 trials of 60-s duration in a randomized order, combining the experimental conditions of no-touch, hand-touch or back-touch with no sensory perturbation, paraspinal muscle vibration or GVS. The results showed that touch through hand or back decreased trunk sway and decreased the effects of muscle vibration and GVS. GVS led to a large increase in sway whereas the effect of muscle vibration was only observed as an increase of drift and not of sway. In the current experimental set-up, the stabilizing effect of touch was strong enough to mask any effects of perturbations of vestibular and paraspinal muscle spindle afference. In conclusion, tactile information, whenever available, seems to play a dominant role in seated postural sway and therefore has important implications for studying trunk control.
机译:这项研究调查了坐姿对躯干摇摆的影响。其中包括两个触摸条件:用右手的食指触摸一个对象(手触摸),并在中背的T10脊椎水平保持与一个对象的接触(后触摸)。在两种接触条件下,施加的力均保持在2 N以下。此外,还研究了接触与椎旁肌振动和电前庭刺激(GVS)的相互作用。十三名无腰痛史的健康受试者参加了这项研究。用运动捕捉系统测量受试者坐在凳子上和躯干摇摆的位置,该系统跟踪躯干上的簇标记。受试者以随机顺序进行了总共12次60秒持续时间的试验,结合了无触摸,手触摸或后触摸的实验条件,无感觉扰动,脊柱旁肌肉振动或GVS。结果表明,通过手或背部触摸会减少躯干摇摆,并降低肌肉振动和GVS的影响。 GVS导致摇摆的大幅增加,而肌肉振动的影响仅观察到漂移的增加而不是摇摆的增加。在当前的实验设置中,触摸的稳定效果足以掩盖前庭和脊柱旁肌梭梭干扰的任何影响。总之,触觉信息(只要有)似乎在坐姿摆动中起主导作用,因此对躯干控制研究具有重要意义。

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