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From perception to action: phase-locked gamma oscillations correlate with reaction times in a speeded response task

机译:从感知到行动:锁相伽马振荡与快速响应任务中的反应时间相关

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Background Phase-locked gamma oscillations have so far mainly been described in relation to perceptual processes such as sensation, attention or memory matching. Due to its very short latency (≈90 ms) such oscillations are a plausible candidate for very rapid integration of sensory and motor processes. Results We measured EEG in 13 healthy participants in a speeded reaction task. Participants had to press a button as fast as possible whenever a visual stimulus was presented. The stimulus was always identical and did not have to be discriminated from other possible stimuli. In trials in which the participants showed a fast response, a slow negative potential over central electrodes starting approximately 800 ms before the response and highly phase-locked gamma oscillations over central and posterior electrodes between 90 and 140 ms after the stimulus were observed. In trials in which the participants showed a slow response, no slow negative potential was observed and phase-locked gamma oscillations were significantly reduced. Furthermore, for slow response trials the phase-locked gamma oscillations were significantly delayed with respect to fast response trials. Conclusion These results indicate the relevance of phase-locked gamma oscillations for very fast (not necessarily detailed) integration processes.
机译:背景技术到目前为止,锁相伽马振荡主要是针对诸如感觉,注意力或记忆匹配的感知过程进行描述的。由于其非常短的等待时间(约90毫秒),这种振荡是感觉和运动过程快速整合的合理候选者。结果我们测量了13名健康参与者在加快反应任务中的脑电图。每当出现视觉刺激时,参与者必须尽快按下按钮。刺激总是相同的,不必与其他可能的刺激区分开。在参与者表现出快速反应的试验中,观察到在响应之前约800毫秒开始在中央电极上出现缓慢的负电位,并在刺激后90到140毫秒之间观察到中央和后电极上的高度锁相伽马振荡。在参与者反应缓慢的试验中,未观察到缓慢的负电位,并且锁相伽马振荡显着降低。此外,对于慢响应试验,相对于快速响应试验,锁相伽马振荡明显延迟。结论这些结果表明锁相伽马振荡与非常快(不一定详细)的积分过程的相关性。

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