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前庭和躯体感觉系统在直立姿势节段间控制中的作用。

The role of vestibular and somatosensory systems in intersegmental control of upright stance.

作者信息

Creath Rob, Kiemel Tim, Horak Fay, Jeka John J

机构信息

Department of Kinesiology, University of Maryland, College Park, MD 20742-2611, USA.

出版信息

J Vestib Res. 2008;18(1):39-49.

Abstract

Upright stance was perturbed using sinusoidal platform rotations to see how vestibular and somatosensory information are used to control segment and intersegmental dynamics in subjects with bilateral vestibular loss (BVL) and healthy controls (C). Subjects stood with eyes closed on a rotating platform (+/-1.2 degrees) for frequencies ranging from 0.01-0.4 Hz in the presence and absence of light fingertip touch. Trunk movement relative to the platform of BVLs was higher than Cs at higher platform frequencies whereas leg movement relative to the platform was similar for both groups. With the addition of light touch, both groups showed similar trunk and leg segment movement relative to the platform. Trunk-leg coordination was in-phase for frequencies below 1 Hz and anti-phase above 1 Hz. Interestingly, BVLs showed evidence of a "legs-leading-trunk" relationship in the shift from in-phase to anti-phase around 1 Hz. Controls showed no preference for either segment to lead the coordinative shift from in- to anti-phase. The results suggest that the balance instability of BVL subjects stems from high variability of the trunk, rather than the legs. The high trunk variability may emerge from the "legs-leading" intersegmental relationship upon which BVLs rely. Because BVLs derive information about self-orientation primarily from the support surface when their eyes are closed, the legs initiate the shift to anti-phase trunk-leg coordination that is necessary for stable upright stance control. Higher trunk variability suggests that this strategy results in lower overall postural stability. Light touch substitutes for vestibular information, leading to lower trunk variability along with a trunk-leg phase shift similar to controls, without a preference for either segment to lead the shift. The results suggest that vestibulospinal control acts primarily to stabilize the trunk in space and to facilitate intersegmental dynamics.

摘要

通过正弦平台旋转干扰直立姿势,以观察在前庭和本体感觉信息的作用下,双侧前庭丧失(BVL)患者和健康对照者(C)如何控制节段及节段间动力学。受试者闭眼站在旋转平台上(±1.2度),频率范围为0.01 - 0.4赫兹,实验分有无轻触指尖两种情况。在较高平台频率下,BVL患者相对于平台的躯干运动高于对照组,而两组相对于平台的腿部运动相似。加上轻触后,两组相对于平台的躯干和腿部节段运动相似。在频率低于1赫兹时,躯干 - 腿部协调为同相,高于1赫兹时为反相。有趣的是,BVL患者在1赫兹左右从同相转变为反相时表现出“腿部带动躯干”的关系。对照组在从同相到反相的协调转变中,对任何一个节段领先都没有偏好。结果表明,BVL患者的平衡不稳定源于躯干的高变异性,而非腿部。高躯干变异性可能源于BVL患者所依赖的“腿部带动”节段间关系。因为BVL患者闭眼时主要从支撑面获取自身定向信息,腿部启动了向反相躯干 - 腿部协调的转变,这是稳定直立姿势控制所必需的。较高的躯干变异性表明这种策略导致整体姿势稳定性较低。轻触替代了前庭信息,导致躯干变异性降低,同时躯干 - 腿部相位转变与对照组相似,且对任何一个节段领先转变都没有偏好。结果表明,前庭脊髓控制主要作用是稳定躯干在空间中的位置并促进节段间动力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf0d/2938746/d9817baa64e1/nihms128395f1.jpg

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