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支撑稳定性会影响人体对肌肉振动的姿势反应。

Support stability influences postural responses to muscle vibration in humans.

作者信息

Ivanenko Y P, Talis V L, Kazennikov O V

机构信息

Institute for Information Transmission Problems, Russian Academy of Sciences, Moscow.

出版信息

Eur J Neurosci. 1999 Feb;11(2):647-54. doi: 10.1046/j.1460-9568.1999.00471.x.

Abstract

We studied the effect of support stability on postural responses to the vibration of Achilles tendons and of neck dorsal muscles in healthy humans. For this purpose we compared postural responses on a rigid floor and on 6 cm high rocking supports (see-saws) of different curvatures (different radii: 30, 60 and 120 cm). The subject stood with eyes closed, the centre of the feet coincided with the centre of the see-saw. We recorded platform tilt, horizontal displacements of the upper body, ankle joint angle and activity of ankle joint muscles. On the rocking platform subjects maintained balance in a sagittal direction by making see-saw rotations placing the support under the body's centre of gravity. Equilibrium maintenance requires that the torque in the ankle joint increases during forward body displacements, as on the rigid floor, and be accompanied by a plantar flexion (not by a dorsiflexion) in the ankle joint. The directional dependence of vibration-induced reactions on the see-saw was the same (relative to space) as on the rigid floor: backward body displacement during Achilles tendon vibration and forward body displacement during neck muscle vibration. A decrease of support stability (with a decrease of the radius from 120 to 30 cm) diminished significantly the effect of Achilles tendon vibration and to a lesser extent the effect of neck muscle vibration. In contrast, the increase of platform stability by hand contact with a stable external object gave rise to prominent body sway in response to Achilles tendon vibration. Neck muscle vibration on the movable support provoked a quick initial forward body sway. This initial quick response was absent during vibration of the Achilles tendons. We conclude that postural responses to muscle vibration reflect the participation of different muscles in posture control and depend on the support properties. Support instability changes the role of proprioceptive information and the state of the system of equilibrium maintenance.

摘要

我们研究了支撑稳定性对健康人跟腱和颈部背侧肌肉振动时姿势反应的影响。为此,我们比较了在刚性地面和不同曲率(不同半径:30、60和120厘米)的6厘米高摇摆支撑(跷跷板)上的姿势反应。受试者闭眼站立,双脚中心与跷跷板中心重合。我们记录了平台倾斜度、上半身的水平位移、踝关节角度和踝关节肌肉的活动。在摇摆平台上,受试者通过进行跷跷板旋转,将支撑置于身体重心下方,从而在矢状方向上保持平衡。维持平衡需要踝关节扭矩在身体向前位移时增加,就像在刚性地面上一样,并且伴随着踝关节的跖屈(而非背屈)。振动诱发反应在跷跷板上的方向依赖性(相对于空间)与在刚性地面上相同:跟腱振动时身体向后位移,颈部肌肉振动时身体向前位移。支撑稳定性降低(半径从120厘米减小到30厘米)会显著减弱跟腱振动的影响,对颈部肌肉振动的影响则较小。相反,通过手接触稳定的外部物体增加平台稳定性,会引发对跟腱振动的明显身体摆动。在可移动支撑上颈部肌肉振动会引发身体快速的初始向前摆动。在跟腱振动时则没有这种初始快速反应。我们得出结论,对肌肉振动的姿势反应反映了不同肌肉在姿势控制中的参与情况,并取决于支撑特性。支撑不稳定会改变本体感觉信息的作用以及平衡维持系统的状态。

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