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平衡维持过程中感觉运动系统对本体感觉输入操纵的控制机制

Control Mechanisms of Sensorimotor System on Manipulation of Proprioceptive Inputs During Balance Maintenance.

作者信息

Shokri Nasim, Yazdanpanah Kohyar, Ashtiani Mohammed N

机构信息

Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran.

Galway University, County Galway, Ireland.

出版信息

J Mot Behav. 2025;57(3):224-232. doi: 10.1080/00222895.2025.2458503. Epub 2025 Jan 30.

Abstract

Proprioceptive inputs have crucial roles in control of the posture. The aim of the present study was to assess the effect of interfering with these signals on postural stability by ice-induced anaesthesia and local calf muscle fatigue. Seventeen healthy young individuals participated in this study to stand quietly and on an unstable platform under normal, anaesthesia, and fatigue conditions. A force platform calculated excursions of centre of pressure. Stabilogram-diffusion analysis was utilised to evaluate how body controls the posture with and without proprioceptive inputs. Time intervals of using the sensory feedback is significantly increased by anaesthesia in quiet standing (430 ms,  = 0.034) to note more delayed use of sensory information in a closed-loop. Additionally, fatigue significantly increased the time intervals of using sensory feedback during standing on the unstable platform (290 ms,  = 0.016). Interestingly, sensory interventions had no effect on the stability of the open-loop control of posture (short-term control), but they significantly influenced the closed-loop control (long-term control) ( < 0.004). Specifically, fatigue led to increased instabilities when the body used sensory inputs during both quiet standing ( = 0.021) and standing on the unstable platform ( = 0.041). These findings highlight the importance of proprioception in balance control for healthy individuals. Interfering with proprioceptive inputs, either through anaesthesia or fatigue, resulted in instabilities during balance maintenance. Our study provides new insights into the mechanisms underlying postural control, emphasising the significance of proprioceptive inputs. Understanding how proprioception affects balance maintenance may have implications for rehabilitation strategies, injury prevention, and the development of interventions to improve postural stability.

摘要

本体感觉输入在姿势控制中起着关键作用。本研究的目的是通过冰敷诱导的麻醉和局部小腿肌肉疲劳来评估干扰这些信号对姿势稳定性的影响。17名健康的年轻个体参与了本研究,在正常、麻醉和疲劳条件下安静站立以及在不稳定平台上站立。一个测力平台计算压力中心的偏移。利用稳定图扩散分析来评估身体在有和没有本体感觉输入的情况下如何控制姿势。在安静站立时,麻醉显著增加了使用感觉反馈的时间间隔(430毫秒,P = 0.034),表明在闭环中感觉信息的使用延迟更多。此外,疲劳显著增加了在不稳定平台上站立时使用感觉反馈的时间间隔(290毫秒,P = 0.016)。有趣的是,感觉干预对姿势的开环控制(短期控制)稳定性没有影响,但它们显著影响了闭环控制(长期控制)(P < 0.004)。具体而言,疲劳导致身体在安静站立(P = 0.021)和在不稳定平台上站立(P = 0.041)时使用感觉输入时不稳定性增加。这些发现突出了本体感觉在健康个体平衡控制中的重要性。通过麻醉或疲劳干扰本体感觉输入会导致平衡维持期间的不稳定性。我们的研究为姿势控制的潜在机制提供了新的见解,强调了本体感觉输入的重要性。了解本体感觉如何影响平衡维持可能对康复策略、损伤预防以及改善姿势稳定性的干预措施的开发具有启示意义。

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