首页> 美国卫生研究院文献>Journal of Neural Transplantation >Podokinetic After-Rotation Is Transiently Enhanced or Reversed by Unilateral Axial Muscle Proprioceptive Stimulation
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Podokinetic After-Rotation Is Transiently Enhanced or Reversed by Unilateral Axial Muscle Proprioceptive Stimulation

机译:单侧轴突肌本体感觉刺激短暂地增强或逆转了足动后旋转。

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摘要

Unilateral axial muscle vibration, eliciting a proprioceptive volley, is known to incite steering behavior. Whole-body rotation while stepping in place also occurs as an after-effect of stepping on a circular treadmill (podokinetic after-rotation, PKAR). Here, we tested the hypothesis that PKAR is modulated by axial muscle vibration. If both phenomena operate through a common pathway, enhancement or cancellation of body rotation would occur depending on the stimulated side when vibration is administered concurrently with PKAR. Seventeen subjects participated in the study. In one session, subjects stepped in place eyes open on the center of a platform that rotated counterclockwise 60°/s for 10 min. When the platform stopped, subjects continued stepping in place blindfolded. In other session, a vibratory stimulus (100 Hz, 2 min) was administered to right or left paravertebral muscles at lumbar level at two intervals during the PKAR. We computed angular body velocity and foot step angles from markers fixed to shoulders and feet. During PKAR, all subjects rotated clockwise. Decreased angular velocity was induced by right vibration. Conversely, when vibration was administered to the left, clockwise rotation velocity increased. The combined effect on body rotation depended on the time at which vibration was administered during PKAR. Under all conditions, foot step angle was coherent with shoulder angular velocity. PKAR results from continuous asymmetric input from the muscles producing leg rotation, while axial muscle vibration elicits a proprioceptive asymmetric input. Both conditioning procedures appear to produce their effects through a common mechanism. We suggest that both stimulations would affect our straight ahead by combining their effects in an algebraic mode.
机译:众所周知,单侧轴向肌肉振动会引起本体感受性凌空,从而引起转向行为。踩踏到位时的全身旋转也作为踩踏圆形跑步机的后效(足动后旋转,PKAR)而产生。在这里,我们测试了PKAR受轴向肌肉振动调制的假设。如果两种现象都通过一条共同的途径起作用,那么当与PKAR同时进行振动时,取决于受刺激的一面,就会出现身体旋转的增强或消除。十七名受试者参加了研究。在一个阶段中,受试者踏入平台中央的眼睛睁开,平台逆时针旋转60°/ s持续10分钟。当平台停止时,受试者继续蒙住双眼。在另一节课中,在PKAR期间,在腰椎水平向右或左椎旁肌肉施以振动刺激(100 Hz,2分钟)。我们从固定在肩膀和脚上的标记计算出角速度和脚步角。在PKAR期间,所有对象都顺时针旋转。右振动会导致角速度降低。相反,当向左振动时,顺时针旋转速度增加。对身体旋转的综合影响取决于在PKAR期间施加振动的时间。在所有条件下,脚步角都与肩角速度一致。 PKAR来自肌肉连续不断的不对称输入,从而导致腿部旋转,而轴向肌肉的振动引起本体感受性不对称输入。两种调节程序似乎都是通过共同的机制产生作用的。我们建议这两种刺激都可以通过以代数方式组合它们的作用来影响我们的前进方向。

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