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首页> 外文期刊>NeuroImage >Lateral prefrontal anodal transcranial direct current stimulation augments resolution of auditory perceptual-attentional conflicts
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Lateral prefrontal anodal transcranial direct current stimulation augments resolution of auditory perceptual-attentional conflicts

机译:横向前额外anoodal经颅直接电流刺激扩大了解析听觉感知 - 注意力冲突

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Successful action control requires the ability to attend to relevant sensory signals in the environment. This, however, can be complicated when different sensory inputs compete for the brain's limited resources. Under such conditions, sensory processes interact with top-down attention to selectively process goal-relevant stimuli, while inhibiting irrelevant or distracting sensory signals. In the current study, we set out to provide causal mechanistic insights for whether and how prefrontal regions are involved in resolving attentional-perceptual conflicts. To this end, we applied atDCS and examined neurophysiological processes of selective auditory perception. To evaluate whether atDCS differentially affects intermingled neurophysiological subprocesses involved during conflict resolution, we decomposed the EEG data using residue iteration decomposition (RIDE). We show that the right prefrontal regions are causally involved in resolving attentional-perceptual conflicts and that atDCS increases the efficacy to do so. The data show that dissociable neurophysiological signals are specifically affected by atDCS. Conflict resolution processes that involve inhibition of competing stimuli and response evaluation and are associated with right middle frontal gyrus (BA46) seem to become intensified by atDCS during the resolution of attentional-perceptual conflicts. After stimulation the early stimulus processing level was also less prone to sensory conflicts, but this alone could not explain the increased behavioral efficacy associated with atDCS. These observed effects likely reflect changes in neuronal gain control mechanisms. Taken together, results of this study may have implications for treating attentional hyperactivity disorder, for which pharmacological intervention is currently the common therapeutic approach.
机译:成功的行动控制需要能够参加环境中的相关感官信号。然而,当不同的感官输入竞争大脑有限的资源时,这可能是复杂的。在这种条件下,感官过程与全面关注相互作用,以选择性地处理目标相关的刺激,同时抑制无关或分散注意力的感觉信号。在目前的研究中,我们向寻求提供因果机械洞察,以便是否以及如何参与解决注意力引起的冲突。为此,我们应用了ATDCS并检查了选择性听觉感知的神经生理过程。为了评估ATDC差异地影响冲突解决期间涉及的混合的神经生理子进程,我们使用残留迭代分解(乘坐)分解EEG数据。我们表明右前额落区因因果关系而导致解决注意力感知冲突,而ATDC增加了这种疗效。数据显示可解离的神经生理信号受ATDC的特异性影响。冲突解决过程,涉及抑制竞争刺激和响应评估,并与右中正面回收(BA46)相关,似乎在解决注意力引起的冲突期间被ATDC增长。在刺激之后,早期刺激加工水平也不太容易发生感官冲突,但仅凭这种情况无法解释与ATDC相关的增加的行为效果。这些观察到的效果可能反映了神经元增益控制机制的变化。在一起,该研究的结果可能对治疗注意力多动障碍有影响,药理学干预目前是常见的治疗方法。

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