首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >The postural disorientation induced by neck muscle vibration subsides on lightly touching a stationary surface or aiming at it.
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The postural disorientation induced by neck muscle vibration subsides on lightly touching a stationary surface or aiming at it.

机译:颈部肌肉振动引起的姿势迷失在轻轻接触静止的表面或对准静止的表面时减弱。

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摘要

The aim of this study was to investigate whether the standing body spatial disorientation, induced by neck muscle vibration, and the related post-effects can be suppressed by light finger touch (LFT) of a stationary surface. Continuous (60 s) vibration of dorsal neck or sternocleidomastoid muscle was administered with eyes closed. The center of foot pressure (CFP) displacement, measured by a stabilometric platform, indicated the degree of vibration-induced body tilt. We also investigated whether sensory information from LFT itself was necessary or anticipation of a more secure posture was enough for reducing vibration effects. To this aim, we administered a vibration pulse (5 s) to dorsal neck or sternocleidomastoid muscle and during reaching to the stationary surface. CFP was recorded during both vibration and post-vibration condition and during the aiming task. Neck vibration induced significant CFP displacement in the direction opposite to vibration site. Post-vibration, CFP slowly returned to control values with ample oscillations. LFT during vibration reduced body tilt. LFT was more effective when fingertip contact was in the plane of the greatest tilt. LFT applied during either vibration or post-vibration period reduced post-vibration effects. Reaching toward the stationary surface was enough for reducing vibration-induced body tilt to values close to those observed during actual LFT. The novel conclusions of this study are: 1) LFT is able to relieve the effects of vibration-induced abnormal proprioceptive input from the neck, a segment central to postural control and orientation; 2) LFT during vibration also attenuates vibration post-effects, further suggesting that its action is not merely mechanical; 3) the intention to stabilize the body generates a new postural 'set' sufficient for diminishing body tilt.
机译:这项研究的目的是研究是否可以通过固定表面的轻触(LFT)来抑制由颈部肌肉振动引起的站立身体空间定向障碍以及相关的后效应。闭眼给予连续(60 s)背颈或胸锁乳突肌的振动。通过稳定平台测量的足底压力(CFP)位移中心指示振动引起的身体倾斜程度。我们还研究了来自LFT本身的感官信息是否必要,还是预期采用更安全的姿势足以减少振动影响。为此,我们对颈背或胸锁乳突肌和到达固定表面的过程施加了振动脉冲(5 s)。在振动和振动后状态以及瞄准任务期间都记录了CFP。颈部振动在与振动部位相反的方向上引起显着的CFP位移。振动后,CFP缓慢恢复到控制值,并有足够的振动。振动期间的LFT减少了身体倾斜。当指尖接触处于最大倾斜平面时,LFT更有效。在振动或振动后阶段施加的LFT会降低振动后的影响。朝向固定表面就足以将振动引起的身体倾斜减小到接近实际LFT期间观察到的值。这项研究的新颖结论是:1)LFT能够缓解由振动引起的颈部异常本体感觉输入的影响,颈部是姿势控制和定向的中心。 2)振动过程中的LFT还减弱了振动的后效应,进一步表明其作用不仅仅是机械的; 3)稳定身体的意图产生了足以减少身体倾斜的新姿势“设定”。

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