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Steady-state evoked potentials distinguish brain mechanisms of self-paced versus synchronization finger tapping

机译:稳态诱发的潜力区分自定位与同步手指攻丝的脑机制

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Sensorimotor synchronization (SMS) requires aligning motor actions to external events and represents a core part of both musical and dance performances. In the current study, to isolate the brain mechanisms involved in synchronizing finger tapping with a musical beat, we compared SMS to pure self-paced finger tapping and listen-only conditions at different tempi. We analyzed EEG data using frequency domain steady-state evoked potentials (SSEPs) to identify sustained electrophysiological brain activity during repetitive tasks. Behavioral results revealed different timing modes between SMS and self-paced finger tapping, associated with distinct scalp topographies, thus suggesting different underlying brain sources. After subtraction of the listen-only brain activity, SMS was compared to self-paced finger tapping. Resulting source estimations showed stronger activation of the left inferior frontal gyrus during SMS, and stronger activation of the bilateral inferior parietal lobule during self-paced finger tapping. These results point to the left inferior frontal gyrus as a pivot for perception–action coupling. We discuss our findings in the context of the ongoing debate about SSEPs interpretation given the variety of brain events contributing to SSEPs and similar EEG frequency responses.
机译:SensorImotor同步(SMS)需要将电机动作对准到外部事件,并且代表音乐和舞蹈表演的核心部分。在目前的研究中,为了将手指攻丝与音乐节拍同步的脑机制,我们将SMS与纯粹的自定步手指攻丝和仅在不同速度的单独的条件进行比较。我们使用频域稳态诱发电位(SSEP)分析了EEG数据,以在重复任务期间识别持续电生理脑活动。行为结果揭示了短信和自定步手指攻丝之间的不同定时模式,与不同的头皮拓扑相关相关,从而表明不同的脑源。在减去仅仅听听的大脑活动之后,将SMS与自行节奏的手指攻丝进行比较。所产生的源估计显示SMS期间左下额相回值的较强激活,并且在自定位手指攻丝期间强烈激活双侧下垂叶。这些结果指向左下方回流作为感知 - 动作耦合的枢轴。我们在关于SSEPS解释的持续辩论的背景下讨论我们的调查结果给出了为SSEPS提供的各种大脑事件和类似的脑电图频率响应。

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