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Transcranial Magnetic Stimulation and Connectivity Mapping: Tools for Studying the Neural Bases of Brain Disorders

机译:经颅磁刺激和连通性映射:研究脑部疾病的神经基础的工具

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摘要

There has been an increasing emphasis on characterizing pathophysiology underlying psychiatric and neurological disorders in terms of altered neural connectivity and network dynamics. Transcranial magnetic stimulation (TMS) provides a unique opportunity for investigating connectivity in the human brain. TMS allows researchers and clinicians to directly stimulate cortical regions accessible to electromagnetic coils positioned on the scalp. The induced activation can then propagate through long-range connections to other brain areas. Thus, by identifying distal regions activated during TMS, researchers can infer connectivity patterns in the healthy human brain and can examine how those patterns may be disrupted in patients with different brain disorders. Conversely, connectivity maps derived using neuroimaging methods can identify components of a dysfunctional network. Nodes in this dysfunctional network accessible as targets for TMS by virtue of their proximity to the scalp may then permit TMS-induced alterations of components of the network not directly accessible to TMS via propagated effects. Thus TMS can provide a portal for accessing and altering neural dynamics in networks that are widely distributed anatomically. Finally, when long-term modulation of network dynamics is induced by trains of repetitive TMS, changes in functional connectivity patterns can be studied in parallel with changes in patient symptoms. These correlational data can elucidate neural mechanisms underlying illness and recovery. In this review, we focus on the application of these approaches to the study of psychiatric and neurological illnesses.
机译:从改变的神经连通性和网络动力学的角度,越来越强调表征精神和神经疾病的病理生理学。经颅磁刺激(TMS)为研究人脑的连通性提供了独特的机会。 TMS使研究人员和临床医生可以直接刺激位于头皮上的电磁线圈可进入的皮质区域。然后,诱导的激活可以通过远程连接传播到其他大脑区域。因此,通过识别在TMS期间激活的远端区域,研究人员可以推断出健康人脑中的连通性模式,并可以检查那些具有不同脑部疾病的患者如何破坏这些模式。相反,使用神经成像方法得出的连接图可以识别功能失调的网络的组件。由于其与头皮的接近性,该功能失调的网络中可作为TMS的目标访问的节点随后可能会允许TMS诱导的网络组件的更改无法通过传播的效果直接供TMS访问。因此,TMS可以为在解剖上分布广泛的网络中访问和更改神经动力学提供门户。最后,当一系列重复的TMS引起网络动态的长期调制时,可以与患者症状的变化并行研究功能连接模式的变化。这些相关数据可以阐明疾病和康复的潜在神经机制。在这篇综述中,我们集中于这些方法在精神病和神经病研究中的应用。

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