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人类前丘脑刺激诱发的皮层电位与内在功能连接一致。

Human anterior thalamic stimulation evoked cortical potentials align with intrinsic functional connectivity.

机构信息

Department of Neurology, Xuanwu Hospital, Capital Medical University, Beijing 100053, China; Clinical Research Center of Epilepsy, Xuanwu Hospital, Capital Medical University, Beijing 100053, China; National Center for Neurological Disorders, Beijing 100053, China.

Center of Brain Circuit Therapeutics, Departments of Neurology, Psychiatry, and Radiology, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115, United States.

出版信息

Neuroimage. 2023 Aug 15;277:120243. doi: 10.1016/j.neuroimage.2023.120243. Epub 2023 Jun 21.

Abstract

Characterizing human thalamocortical network is fundamental for understanding a vast array of human behaviors since the thalamus plays a central role in cortico-subcortical communication. Over the past few decades, advances in functional magnetic resonance imaging have allowed for spatial mapping of intrinsic resting-state functional connectivity (RSFC) between both cortical regions and in cortico-subcortical networks. Despite these advances, identifying the electrophysiological basis of human thalamocortical network architecture remains challenging. By leveraging stereoelectroencephalography electrodes temporarily implanted into distributed cortical regions and the anterior nucleus of the thalamus (ANT) of 10 patients with refractory focal epilepsy, we tested whether ANT stimulation evoked cortical potentials align with RSFC from the stimulation site, derived from a normative functional connectome (n = 1000). Our study identifies spatial convergence of ANT stimulation evoked cortical potentials and normative RSFC. Other than connections to the Papez circuit, the ANT was found to be closely connected to several distinct higher-order association cortices, including the precuneus, angular gyrus, dorsal lateral prefrontal cortex, and anterior insula. Remarkably, we found that the spatial distribution and magnitude of cortical-evoked responses to single-pulse electrical stimulation of the ANT aligned with the spatial pattern and strength of normative RSFC of the stimulation site. The present study provides electrophysiological evidence that stimulation evoked electrical activity flows along intrinsic brain networks connected on a thalamocortical level.

摘要

描述人类丘脑皮质网络的特征对于理解广泛的人类行为至关重要,因为丘脑在皮质下皮质通讯中起着核心作用。在过去的几十年中,功能磁共振成像的进步使得在皮质区域之间以及皮质下网络中进行内在静息状态功能连接 (RSFC) 的空间映射成为可能。尽管取得了这些进展,但确定人类丘脑皮质网络结构的电生理基础仍然具有挑战性。通过利用立体脑电图电极暂时植入到 10 名难治性局灶性癫痫患者的分布式皮质区域和丘脑前核 (ANT),我们测试了 ANT 刺激诱发的皮质电位是否与从刺激部位得出的、源自规范功能连接组 (n=1000) 的 RSFC 一致。我们的研究确定了 ANT 刺激诱发的皮质电位和规范 RSFC 的空间收敛。除了与帕佩兹回路的连接外,ANT 还与几个不同的高级联合皮质密切相关,包括楔前叶、角回、背外侧前额叶皮质和前岛叶。值得注意的是,我们发现,对 ANT 的单脉冲电刺激引起的皮质诱发反应的空间分布和幅度与刺激部位的规范 RSFC 的空间模式和强度一致。本研究提供了电生理学证据,证明刺激诱发的电活动沿着在丘脑皮质水平上连接的内在脑网络流动。

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