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首页> 外文期刊>The European Journal of Neuroscience >Anticipatory changes in beta synchrony in the human corticospinal system and associated improvements in task performance.
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Anticipatory changes in beta synchrony in the human corticospinal system and associated improvements in task performance.

机译:人类皮质脊髓系统中β同步性的预期变化以及任务绩效的相关改善。

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Synchronized oscillatory activity in the beta frequency band (13-30 Hz) can be detected in the cerebral motor cortex of healthy humans in the form of corticomuscular coherence. Elevated beta activity is associated with impaired processing of new movements and with more efficient postural or tonic contraction. Accordingly, beta activity is suppressed prior to voluntary movements, rebounding thereafter in the face of peripheral afferance. However, it remains to be established whether synchronized activity in the beta band can be up-regulated in a task-appropriate way independently of confounding changes in sensory afferance. Here we show that there is a systematic and prospective increase in beta synchrony prior to an expected postural challenge. This up-regulation of beta synchrony is associated with improved behavioural performance. We instructed nine healthy subjects to perform a reaction-time movement of the index finger in response to an imperative visual cue or to resist a stretch to the finger in the same direction. These events were preceded by congruent and less common incongruent warning cues. Beta synchrony was temporally increased when subjects were warned of an impending stretch and decreased following a warning cue signalling a forthcoming reaction-time task. Finger positions were less successfully maintained in the face of stretches and reaction times were longer when warning cues were incongruent. The results suggest that the beta state is modulated in a task-relevant way with accompanying behavioural consequences.
机译:在β频段(13-30 Hz)中,同步振荡活动可以以皮质-细胞相干的形式在健康人的大脑运动皮层中检测到。增强的β活性与新动作的处理受损以及更有效的姿势或强直性收缩有关。因此,β活性在自愿运动之前被抑制,此后面对外围传入反弹。然而,是否能够以任务适当的方式上调β波段中的同步活动,而与混淆感官变化无关,尚待确定。在这里,我们表明,在预期的姿势挑战之前,β同步性有系统的和预期的增加。 Beta同步的这种上调与改善的行为表现有关。我们指示九名健康受试者响应必要的视觉提示执行食指的反应时间移动,或抵抗同一方向上的手指拉伸。在这些事件之前,出现了一致且不太常见的不一致警告提示。当警告受试者即将进行的伸展运动时,β同步性在时间上会增加,而在警告信号提示即将进行的反应时间任务后,β同步性会降低。当警告提示不一致时,手指在伸直时难以保持姿势,反应时间更长。结果表明,β状态以与任务相关的方式进行调制,并伴有行为后果。

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