首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >From the Cover: Synchronizing theta oscillations with direct-current stimulation strengthens adaptive control in the human brain
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From the Cover: Synchronizing theta oscillations with direct-current stimulation strengthens adaptive control in the human brain

机译:从封面开始:将theta振荡与直流电刺激同步可增强人脑的自适应控制

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摘要

Executive control and flexible adjustment of behavior following errors are essential to adaptive functioning. Loss of adaptive control may be a biomarker of a wide range of neuropsychiatric disorders, particularly in the schizophrenia spectrum. Here, we provide support for the view that oscillatory activity in the frontal cortex underlies adaptive adjustments in cognitive processing following errors. Compared with healthy subjects, patients with schizophrenia exhibited low frequency oscillations with abnormal temporal structure and an absence of synchrony over medial-frontal and lateral-prefrontal cortex following errors. To demonstrate that these abnormal oscillations were the origin of the impaired adaptive control in patients with schizophrenia, we applied noninvasive dc electrical stimulation over the medial-frontal cortex. This noninvasive stimulation descrambled the phase of the low-frequency neural oscillations that synchronize activity across cortical regions. Following stimulation, the behavioral index of adaptive control was improved such that patients were indistinguishable from healthy control subjects. These results provide unique causal evidence for theories of executive control and cortical dysconnectivity in schizophrenia.
机译:错误后的执行控制和行为的灵活调整对于自适应功能至关重要。失去适应性控制可能是广泛的神经精神疾病的生物标志,特别是在精神分裂症方面。在这里,我们为以下观点提供支持:额叶皮层中的振荡活动是认知过程中适应性调整的基础。与健康受试者相比,精神分裂症患者表现出低频振荡,具有暂时的时间结构,并且在发生错误后,内侧额叶和外侧额叶前皮层没有同步性。为了证明这些异常振荡是精神分裂症患者适应性控制受损的原因,我们在内侧额叶皮层上施加了无创直流电刺激。这种非侵入性刺激扰乱了低频神经振荡的阶段,该阶段使整个皮质区域的活动同步。刺激后,适应性控制的行为指数得到改善,从而使患者与健康对照者无法区分。这些结果为精神分裂症的执行控制和皮质不连通性理论提供了独特的因果证据。

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