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支持认知控制的外侧前额叶皮层动态的因果证据。

Causal evidence for lateral prefrontal cortex dynamics supporting cognitive control.

机构信息

Department of Psychology, Florida State University, Tallahassee, United States.

Helen Wills Neuroscience Institute, University of California, Berkeley, Berkeley, United States.

出版信息

Elife. 2017 Sep 13;6:e28040. doi: 10.7554/eLife.28040.

Abstract

The lateral prefrontal cortex (LPFC) is essential for higher-level cognition, but the nature of its interactions in supporting cognitive control remains elusive. Previously (Nee and D'Esposito, 2016), dynamic causal modeling (DCM) indicated that mid LPFC integrates abstract, rostral and concrete, caudal influences to inform context-appropriate action. Here, we use continuous theta-burst transcranial magnetic stimulation (cTBS) to test this model causally. cTBS was applied to three LPFC sites and a control site in counterbalanced sessions. Behavioral modulations resulting from cTBS were largely predicted by information flow within the previously estimated DCM. However, cTBS to caudal LPFC unexpectedly impaired processes that are presumed to involve rostral LPFC. Adding a pathway from caudal to mid-rostral LPFC significantly improved the model fit and accounted for the observed behavioral findings. These data provide causal evidence for LPFC dynamics supporting cognitive control and demonstrate the utility of combining DCM with causal manipulations to test and refine models of cognition.

摘要

外侧前额叶皮层(LPFC)对于高级认知至关重要,但支持认知控制的其相互作用的本质仍然难以捉摸。此前(Nee 和 D'Esposito,2016),动态因果建模(DCM)表明,中 LPFC 整合了抽象的、额侧的和具体的、尾侧的影响,以告知上下文适当的行动。在这里,我们使用连续 theta 爆发经颅磁刺激(cTBS)对此模型进行因果测试。cTBS 在对照会话中应用于三个 LPFC 部位和一个对照部位。cTBS 引起的行为调制在很大程度上可以通过先前估计的 DCM 内的信息流来预测。然而,对 LPFC 尾侧的 cTBS 出乎意料地损害了据推测涉及 LPFC 额侧的过程。从尾侧到中额侧 LPFC 添加一条通路可显著提高模型拟合度,并解释了观察到的行为结果。这些数据提供了支持认知控制的 LPFC 动力学的因果证据,并证明了将 DCM 与因果操纵相结合来测试和完善认知模型的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f39/5640427/60a4d0b41db2/elife-28040-fig1.jpg

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