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视觉输入对开环和闭环姿势控制机制的影响。

The effects of visual input on open-loop and closed-loop postural control mechanisms.

作者信息

Collins J J, De Luca C J

机构信息

NeuroMuscular Research Center, Boston University, MA 02215, USA.

出版信息

Exp Brain Res. 1995;103(1):151-63. doi: 10.1007/BF00241972.

DOI:10.1007/BF00241972
PMID:7615030
Abstract

In an earlier posturographic investigation (Collins and De Luca 1993) it was proposed that open-loop and closed-loop control mechanisms are involved in the regulation of undisturbed, upright stance. In this study, stabilogram-diffusion analysis was used to examine how visual input affects the operational characteristics of these control mechanisms. Stabilogram-diffusion analysis leads to the extraction of repeatable center-of-pressure (COP) parameters that can be directly related to the resultant steady-state behavior and functional interaction of the neuromuscular mechanisms underlying the maintenance of erect posture. Twenty-five healthy male subjects (aged 19-30 years) were included in the study. An instrumented force platform was used to measure the time-varying displacements of the COP under each subject's feet during quiet standing. The subjects were tested under eyes-open and eyes-closed conditions. The COP trajectories were analyzed as one-dimensional and two-dimensional random walks, according to stabilogram-diffusion analysis. Using this technique, it was found that visual input affects the performance of the postural control system in one of two different ways--either it significantly modifies the steady-state behavior of the open-loop postural control mechanisms, or it significantly alters the characteristics of the other closed-loop feedback mechanisms that are involved in balance control. This result is interpreted as an indication that the visual system is integrated into the postural control system in one of two different ways. The experimental population was roughly evenly divided between these two schemes. For the first group (13 of 25 subjects), visual input principally caused a decrease in the "effective" stochastic activity of the open-loop control mechanisms in both the mediolateral and anteroposterior directions. For the second group (12 of 25 subjects), visual input caused an increase in the effective stochastic activity and uncorrelated behavior of the closed-loop control mechanisms in the anteroposterior direction only. On the basis of these results, it is hypothesized that visual input, in both schemes, serves to decrease the stiffness of the musculoskeletal system. In the former case, this may be accomplished by decreasing the level of muscular activity across the joints of the lower limb, whereas, in the latter case, reduced stiffness may be achieved by reducing the gain(s) of the other postural feedback mechanisms, i.e., the proprioceptive and/or vestibular systems. Using stabilogram-diffusion analysis, it was also found that the two groups of subjects behaved similarly under eyes-closed conditions.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

在早期的姿势描记研究中(柯林斯和德卢卡,1993年),有人提出开环和闭环控制机制参与了对未受干扰的直立姿势的调节。在本研究中,使用稳定图扩散分析来检验视觉输入如何影响这些控制机制的运行特性。稳定图扩散分析能够提取可重复的压力中心(COP)参数,这些参数可直接与维持直立姿势背后的神经肌肉机制的稳态行为和功能相互作用相关联。25名健康男性受试者(年龄在19至30岁之间)参与了该研究。使用仪器化的测力平台来测量每位受试者在安静站立时双脚下方COP随时间的位移。受试者在睁眼和闭眼条件下接受测试。根据稳定图扩散分析,将COP轨迹分析为一维和二维随机游走。使用该技术发现,视觉输入以两种不同方式之一影响姿势控制系统的性能——要么它显著改变开环姿势控制机制的稳态行为,要么它显著改变参与平衡控制的其他闭环反馈机制的特性。这一结果被解释为表明视觉系统以两种不同方式之一整合到姿势控制系统中。实验人群在这两种模式之间大致平均分配。对于第一组(25名受试者中的13名),视觉输入主要导致开环控制机制在内外侧和前后方向上的“有效”随机活动减少。对于第二组(25名受试者中的12名),视觉输入仅导致闭环控制机制在前后方向上的有效随机活动增加以及不相关行为增加。基于这些结果,推测在这两种模式下,视觉输入都有助于降低肌肉骨骼系统的刚度。在前一种情况下,这可能通过降低下肢关节处的肌肉活动水平来实现,而在后一种情况下,降低刚度可能通过降低其他姿势反馈机制(即本体感觉和/或前庭系统)的增益来实现。使用稳定图扩散分析还发现,两组受试者在闭眼条件下的表现相似。(摘要截选至400字)

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