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刺激映射白质束以研究大脑功能连接。

Stimulation mapping of white matter tracts to study brain functional connectivity.

机构信息

Department of Neurosurgery and INSERM U1051, Gui de Chauliac Hospital, Montpellier University Medical Center, 80 Avenue Augustin Fliche, 34295 Montpellier, France.

出版信息

Nat Rev Neurol. 2015 May;11(5):255-65. doi: 10.1038/nrneurol.2015.51. Epub 2015 Apr 7.

Abstract

Despite advances in the new science of connectomics, which aims to comprehensively map neural connections at both structural and functional levels, techniques to directly study the function of white matter tracts in vivo in humans have proved elusive. Direct electrical stimulation (DES) mapping of the subcortical fibres offers a unique opportunity to investigate the functional connectivity of the brain. This original method permits real-time anatomo-functional correlations, especially with regard to neural pathways, in awake patients undergoing brain surgery. In this article, the goal is to review new insights, gained from axonal DES, into the functional connectivity underlying the sensorimotor, visuospatial, language and sociocognitive systems. Interactions between these neural networks and multimodal systems, such as working memory, attention, executive functions and consciousness, can also be investigated by axonal stimulation. In this networking model of conation and cognition, brain processing is not conceived as the sum of several subfunctions, but results from the integration and potentiation of parallel-though partially overlapping-subnetworks. This hodotopical account, supported by axonal DES, improves our understanding of neuroplasticity and its limitations. The clinical implications of this paradigmatic shift from localizationism to hodotopy, in the context of brain surgery, neurology, neurorehabilitation and psychiatry, are discussed.

摘要

尽管连接组学这门新科学在结构和功能层面上全面绘制神经连接方面取得了进展,但证明难以直接在人类活体中研究白质束的功能。对皮质下纤维进行直接电刺激 (DES) 映射提供了一个独特的机会,可以研究大脑的功能连接。这种原始方法允许在接受脑部手术的清醒患者中实时进行解剖学功能关联,尤其是针对神经通路。在本文中,目标是回顾通过轴突 DES 获得的新见解,了解感觉运动、视觉空间、语言和社会认知系统的功能连接。通过轴突刺激还可以研究这些神经网络与工作记忆、注意力、执行功能和意识等多模态系统之间的相互作用。在这个意志和认知的网络模型中,大脑处理不是被设想为几个子功能的总和,而是来自平行但部分重叠的子网的整合和增强。这种轴突 DES 支持的霍多拓扑学解释,提高了我们对神经可塑性及其局限性的理解。在脑外科、神经病学、神经康复和精神病学领域,从定位主义到霍多拓扑学的这种范例转变的临床意义正在讨论中。

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