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The Medial Frontal Cortex Mediates Self-Other Discrimination in the Joint Simon Task A tDCS Study

机译:内侧前线皮质在联合西蒙任务中介导自我歧视A TDCS研究

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Interacting with other individuals confronts cognitive control systems with the problem of how to distinguish between self-generated (internally triggered) and other-generated (externally triggered) action events. Recent neuroscience studies identified two core brain regions, the anterior medial frontal cortex (aMFC) and the right temporo-parietal junction (rTPJ), to be potentially involved in resolving this problem either by enhancing self-generated versus other-generated event representations (via aMFC) and/or by inhibiting event representations that are externally triggered (via rTPJ). Using transcranial direct current stimulation (tDCS), we investigated the role of the aMFC and the rTPJ for the online control of self-generated versus other-generated event representations in a joint Simon task. In two experimental sessions, participants received anodal, cathodal, or sham tDCS (1 mA intensity applied for 20 min), while performing an auditory joint Simon task. In addition to a general performance enhancement during cathodal (inhibitory) and anodal (excitatory) stimulation with increased practice, we found a significantly increased joint Simon effect (JSE) during cathodal stimulation of the aMFC (Experiment 1), as compared to sham stimulation. No modulation of the JSE was found during stimulation of the rTPJ (Experiment 2). By enhancing self-generated event representations the aMFC seems to be crucially involved in resolving the self- other discrimination problem in the joint Simon task.
机译:与其他个人互动面对认知控制系统,如何区分自生成(内部触发)和其他生成(外部触发)动作事件。最近的神经科学研究确定了两个核心脑区,前内侧前沿皮质(AMFC)和右颞旁边结(RTPJ),潜在地通过增强自我产生的与其他生成的事件表示来解决这个问题(通过AMFC)和/或通过禁止外部触发的事件表示(通过RTPJ)。使用经常电流刺激(TDC),我们调查了AMFC和RTPJ在联合Simon任务中对自我生成与其他生成事件表示的在线控制的作用。在两个实验课程中,参与者接受了阳极,阴极或假TDC(1 mA强度施加20分钟),同时执行听觉联合西蒙任务。除了在阴极(抑制)和Anodal(兴奋性)刺激期间的一般性能增强,我们发现,与假刺激相比,我们发现在AMFC的阴极刺激(实验1)的阴极刺激期间显着增加的联合西蒙效应(JSE)。在刺激RTPJ(实验2)期间没有发现JSE的调节。通过增强自我生成的事件表示,AMFC似乎是关键在于解决联合西蒙任务中的自我其他歧视问题。

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