Centre de recherche de l'Institut Universitaire de Gériatrie de Montréal, Montréal, Quebec, Canada.
Department of Applied Physiology and Kinesiology, University of Florida, Gainesville, Florida, United States of America.
PLoS Biol. 2020 Jul 2;18(7):e3000789. doi: 10.1371/journal.pbio.3000789. eCollection 2020 Jul.
In the absence of any task, both the brain and spinal cord exhibit spontaneous intrinsic activity organised in a set of functionally relevant neural networks. However, whether such resting-state networks (RSNs) are interconnected across the brain and spinal cord is unclear. Here, we used a unique scanning protocol to acquire functional images of both brain and cervical spinal cord (CSC) simultaneously and examined their spatiotemporal correspondence in humans. We show that the brain and spinal cord activities are strongly correlated during rest periods, and specific spinal cord regions are functionally linked to consistently reported brain sensorimotor RSNs. The functional organisation of these networks follows well-established anatomical principles, including the contralateral correspondence between the spinal hemicords and brain hemispheres as well as sensory versus motor segregation of neural pathways along the brain-spinal cord axis. Thus, our findings reveal a unified functional organisation of sensorimotor networks in the entire central nervous system (CNS) at rest.
在没有任何任务的情况下,大脑和脊髓都会表现出自发的内在活动,这些活动组织在一组与功能相关的神经网络中。然而,这种静息状态网络(RSN)是否在大脑和脊髓之间相互连接还不清楚。在这里,我们使用了一种独特的扫描方案,同时获取大脑和颈段脊髓(CSC)的功能图像,并在人类中检查了它们的时空对应关系。我们表明,在休息期间大脑和脊髓的活动具有很强的相关性,并且特定的脊髓区域与一致报道的大脑感觉运动 RSN 具有功能连接。这些网络的功能组织遵循既定的解剖学原则,包括脊髓半侧与大脑半球之间的对侧对应,以及沿着脑脊髓轴的感觉与运动神经通路的分离。因此,我们的发现揭示了整个中枢神经系统(CNS)在休息时感觉运动网络的统一功能组织。