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人类丘脑底核-内侧前额叶皮质θ相位相干性参与冲突和错误相关的皮质监测。

Human subthalamic nucleus-medial frontal cortex theta phase coherence is involved in conflict and error related cortical monitoring.

作者信息

Zavala Baltazar, Tan Huiling, Ashkan Keyoumars, Foltynie Thomas, Limousin Patricia, Zrinzo Ludvic, Zaghloul Kareem, Brown Peter

机构信息

Nuffield Department of Clinical Neurology, University of Oxford John Radcliffe Hospital, Oxford, OX3 9DU, UK; Surgical Neurology Branch, National Institutes of Health, 10 Center Drive, 3D20, Bethesda, MD 20814, USA.

Nuffield Department of Clinical Neurology, University of Oxford John Radcliffe Hospital, Oxford, OX3 9DU, UK; Medical Research Council Brain Network Dynamics Unit at the University of Oxford, Mansfield Road, OX1 3TH, UK.

出版信息

Neuroimage. 2016 Aug 15;137:178-187. doi: 10.1016/j.neuroimage.2016.05.031. Epub 2016 May 12.

Abstract

The medial prefrontal cortex (mPFC) is thought to control the shift from automatic to controlled action selection when conflict is present or when mistakes have been recently committed. Growing evidence suggests that this process involves frequency specific communication in the theta (4-8Hz) band between the mPFC and the subthalamic nucleus (STN), which is the main target of deep brain stimulation (DBS) for Parkinson's disease. Key in this hypothesis is the finding that DBS can lead to impulsivity by disrupting the correlation between higher mPFC oscillations and slower reaction times during conflict. In order to test whether theta band coherence between the mPFC and the STN underlies adjustments to conflict and to errors, we simultaneously recorded mPFC and STN electrophysiological activity while DBS patients performed an arrowed flanker task. These recordings revealed higher theta phase coherence between the two sites during the high conflict trials relative to the low conflict trials. These differences were observed soon after conflicting arrows were displayed, but before a response was executed. Furthermore, trials that occurred after an error was committed showed higher phase coherence relative to trials that followed a correct trial, suggesting that mPFC-STN connectivity may also play a role in error related adjustments in behavior. Interestingly, the phase coherence we observed occurred before increases in theta power, implying that the theta phase and power may influence behavior at separate times during cortical monitoring. Finally, we showed that pre-stimulus differences in STN theta power were related to the reaction time on a given trial, which may help adjust behavior based on the probability of observing conflict during a task.

摘要

内侧前额叶皮质(mPFC)被认为在冲突出现或近期犯错时,控制从自动到受控动作选择的转变。越来越多的证据表明,这一过程涉及mPFC与丘脑底核(STN)之间在θ(4 - 8Hz)频段的频率特异性通信,而丘脑底核是帕金森病深部脑刺激(DBS)的主要靶点。这一假说的关键在于发现DBS会通过破坏冲突期间较高的mPFC振荡与较慢反应时间之间的相关性而导致冲动性。为了测试mPFC与STN之间的θ频段相干性是否是对冲突和错误进行调整的基础,我们在DBS患者执行箭头侧翼任务时,同时记录了mPFC和STN的电生理活动。这些记录显示,与低冲突试验相比,在高冲突试验期间,两个部位之间的θ相位相干性更高。这些差异在显示冲突箭头后不久就被观察到,但在执行反应之前。此外,犯错后出现的试验相对于正确试验后的试验显示出更高的相位相干性,这表明mPFC - STN连接性也可能在与错误相关的行为调整中发挥作用。有趣的是,我们观察到的相位相干性在θ功率增加之前就出现了,这意味着θ相位和功率可能在皮层监测的不同时间影响行为。最后,我们表明,刺激前STN的θ功率差异与给定试验的反应时间相关,这可能有助于根据任务期间观察到冲突的概率来调整行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35ac/4927260/0fdd9046bf55/gr1.jpg

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