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与对全身扰动以维持直立稳定性的准备和反应相关的皮质反应。

Cortical responses associated with the preparation and reaction to full-body perturbations to upright stability.

作者信息

Mochizuki G, Sibley K M, Esposito J G, Camilleri J M, McIlroy W E

机构信息

Toronto Rehabilitation Institute, University Centre, Toronto, Canada.

出版信息

Clin Neurophysiol. 2008 Jul;119(7):1626-37. doi: 10.1016/j.clinph.2008.03.020. Epub 2008 May 13.

Abstract

OBJECTIVE

To examine the cortical activity associated with 'central set' preparations for induced whole-body instability.

METHODS

Self-initiated and temporally unpredictable perturbations to standing balance were caused by the release of a load coupled to a cable affixed to a harness while participants stood on a force plate. Electroencephalographic and electromyographic signals were recorded.

RESULTS

Peak activity was located at the Cz electrode. The predictable condition elicited a DC shift 950 ms prior to perturbation onset and was 18.0+/-10.5 micro V in magnitude. Pre-perturbation activity was not associated with the motor act of perturbation initiation and was dissociable from cortical activity related to anticipatory postural muscle activation. Following perturbation onset, N1 potentials were observed with a peak amplitude of 17.6+/-7.2 micro V and peak latency of 140.1+/-25.9 ms. In unpredictable trials, pre-perturbation activity was absent. The peak amplitude (32.0+/-14.8 micro V) and latency (156.5+/-11.8 ms) of the post-perturbation N1 potential were significantly larger (p=0.002) and later (p<0.001) than for predictable trials.

CONCLUSIONS

Self-initiated postural instability evokes cortical activity prior to and following perturbation onset. Pre-perturbation cortical activity is associated with changing central set to modulate appropriate perturbation-evoked balance responses.

SIGNIFICANCE

These findings establish a link between reactive balance control and cortical activity that precedes and follows perturbations to stability.

摘要

目的

研究与诱导全身不稳定的“中枢定势”准备相关的皮层活动。

方法

当参与者站在测力板上时,通过释放连接到固定在背带上的电缆的负载,对站立平衡进行自我发起且时间上不可预测的扰动。记录脑电图和肌电图信号。

结果

峰值活动位于Cz电极处。可预测条件在扰动开始前950毫秒引发直流偏移,幅度为18.0±10.5微伏。扰动前的活动与扰动起始的运动行为无关,并且与预期姿势肌肉激活相关的皮层活动可分离。扰动开始后,观察到N1电位,峰值幅度为17.6±7.2微伏,峰值潜伏期为140.1±25.9毫秒。在不可预测的试验中,扰动前的活动不存在。扰动后N1电位的峰值幅度(32.0±14.8微伏)和潜伏期(156.5±11.8毫秒)比可预测试验中的显著更大(p = 0.002)且更晚(p < 0.001)。

结论

自我发起的姿势不稳定在扰动开始之前和之后都会引发皮层活动。扰动前的皮层活动与改变中枢定势以调节适当的扰动诱发平衡反应有关。

意义

这些发现建立了反应性平衡控制与稳定性扰动之前和之后的皮层活动之间的联系。

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