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前庭诱发反应的调制,先于简单和复杂的手臂运动。

Modulation of vestibular-evoked responses prior to simple and complex arm movements.

机构信息

School of Health and Exercise Sciences, University of British Columbia Okanagan, 1147 Research Road, Kelowna, BC, V1V 1V7, Canada.

出版信息

Exp Brain Res. 2020 Apr;238(4):869-881. doi: 10.1007/s00221-020-05760-8. Epub 2020 Mar 11.

Abstract

During destabilizing, voluntary arm movements, the vestibular system provides sensory cues related to head motion that are necessary to preserve upright balance. Although sensorimotor processing increases in accordance with task complexity during the preparation phase of reaching, it is unclear whether vestibular signals are also enhanced when maintaining postural control prior to the execution of a voluntary movement. To probe whether vestibular cues are a component of complexity-related increases in sensorimotor processing during movement preparation, vestibular-evoked responses to stochastic (0-25 Hz; root mean square = 1 mA) binaural, bipolar electrical vestibular stimulation (EVS) were examined. These responses were assessed using cumulant density function estimates in the upper and lower limbs prior to ballistic arm movements of varying complexity in both standing (experiment 1) and seated (experiment 2) conditions. In experiment 1, EVS-electromyography (EMG) cumulant density estimates surpassed 95% confidence intervals for biceps and triceps brachii, as well as the left and right medial gastrocnemius. For the latter two muscles, the responses were enhanced 10-18% with increased movement complexity. In experiment 2, the EVS-EMG cumulant density estimates also surpassed 95% confidence intervals in the upper limb, confirming the presence of vestibular-evoked responses while seated; however, the amplitude was significantly less than standing. This study demonstrates the vestibular system contributes to postural stability during the preparation phase of reaching. As such, vestibular-driven signals may be used to update an internal model for upcoming reaching tasks or to prepare for imminent postural disturbances.

摘要

在不稳定的、自主的手臂运动过程中,前庭系统提供与头部运动相关的感觉线索,这些线索对于保持直立平衡是必要的。尽管在到达的准备阶段,随着任务复杂性的增加,感觉运动处理会增加,但在执行自主运动之前,维持姿势控制时,前庭信号是否也会增强尚不清楚。为了探究前庭线索是否是运动准备期间与复杂性相关的感觉运动处理增加的组成部分,研究人员检查了随机(0-25 Hz;均方根= 1 mA)双耳双极电前庭刺激(EVS)对前庭诱发反应的影响。在实验 1(站立条件)和实验 2(坐姿条件)中,在进行不同复杂性的弹道手臂运动之前,使用累积密度函数估计值在上肢和下肢评估这些反应。在实验 1 中,EVS-肌电图(EMG)累积密度估计值超过了肱二头肌和肱三头肌以及左、右内侧腓肠肌的 95%置信区间。对于后两个肌肉,随着运动复杂性的增加,反应增强了 10-18%。在实验 2 中,EVS-EMG 累积密度估计值也在上肢超过了 95%置信区间,证实了坐姿时存在前庭诱发反应;然而,幅度明显小于站立时。本研究表明,前庭系统在到达的准备阶段有助于姿势稳定。因此,前庭驱动信号可能用于更新即将到来的到达任务的内部模型,或为即将发生的姿势干扰做准备。

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Postural threat influences vestibular-evoked muscular responses.姿势威胁会影响前庭诱发的肌肉反应。
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