1Brain Mapping Unit, Department of Psychiatry, University of Cambridge.
2The Alan Turing Institute, London, United Kingdom.
J Neurosurg. 2020 Jul 31;134(6):1959-1966. doi: 10.3171/2020.5.JNS191281. Print 2021 Jun 1.
Connectomics is the production and study of detailed "connection" maps within the nervous system. With unprecedented advances in imaging and high-performance computing, the construction of individualized connectomes for routine neurosurgical use is on the horizon. Multiple projects, including the Human Connectome Project (HCP), have unraveled new and exciting data describing the functional and structural connectivity of the brain. However, the abstraction from much of these data to clinical relevance remains elusive. In the context of preserving neurological function after supratentorial surgery, abstracting surgically salient points from the vast computational data in connectomics is of paramount importance. Herein, the authors discuss four interesting observations from the HCP data that have surgical relevance, with an emphasis on the cortical organization of language: 1) the existence of a motor speech area outside of Broca's area, 2) the eloquence of the frontal aslant tract, 3) the explanation of the medial frontal cognitive control networks, and 4) the establishment of the second ventral stream of language processing. From these connectome observations, the authors discuss the anatomical basis of their insights as well as relevant clinical applications. Together, these observations provide a firm platform for neurosurgeons to advance their knowledge of the cortical networks involved in language and to ultimately improve surgical outcomes. It is hoped that this report encourages neurosurgeons to explore new vistas in connectome-based neurosurgery.
连接组学是在神经系统内产生和研究详细的“连接”图谱。随着成像和高性能计算的空前进步,用于常规神经外科的个体化连接组学的构建即将实现。包括人类连接组计划(HCP)在内的多个项目已经揭示了新的令人兴奋的数据,描述了大脑的功能和结构连接。然而,将这些数据中的大部分抽象为临床相关性仍然难以捉摸。在保持幕上手术后神经功能的情况下,从连接组学的大量计算数据中提取出具有手术意义的关键点至关重要。在此,作者讨论了 HCP 数据中与手术相关的四个有趣观察结果,重点讨论了语言的皮质组织:1)在布罗卡区之外存在运动言语区,2)额斜束的表达,3)对额内侧认知控制网络的解释,以及 4)语言处理的第二腹侧流的建立。从这些连接组学观察中,作者讨论了他们见解的解剖学基础以及相关的临床应用。这些观察结果为神经外科医生提供了一个坚实的平台,以提高他们对涉及语言的皮质网络的认识,并最终改善手术结果。希望本报告能鼓励神经外科医生探索连接组学神经外科的新视角。