Laboratory of Motor Control, Department of Medical Biotechnologies and Translational Medicine, Università degli Studi di Milano, Humanitas Reasearch Hospital, IRCCS, Milan, Italy.
Laboratory of Motor Control, Department of Medical Biotechnologies and Translational Medicine, Università degli Studi di Milano, Humanitas Reasearch Hospital, IRCCS, Milan, Italy.
Neuroimage. 2020 Jan 1;204:116215. doi: 10.1016/j.neuroimage.2019.116215. Epub 2019 Sep 24.
The development of awake intraoperative brain-mapping procedures for resection of brain tumors is of growing interest in neuroscience, because it enables direct testing of brain tissue, previously only possible in non-human primates. In a recent study performed in this setting specific effects can be induced by direct electrical stimulation on different sectors of premotor cortex during the execution of a hand manipulation task. Specifically, direct electrical stimulation applied on a dorsal sector of precentral cortex led to an increase in motor unit recruitment in hand muscles during execution of a hand manipulation task (Recruitment sector). The opposite effect was elicited when electrical stimulation was delivered more ventrally on the precentral cortex (Suppression sector). We studied whether the different effects on motor behavior induced by direct electrical stimulation applied on the two sites of the precentral cortex underlie differences in their functional connectivity with other brain areas, measured using resting state fMRI. Using healthy adults scanned as part of the Human Connectome Project, we computed the functional connectivity of each sector used as seeds. The functional connectivity patterns of the two intraoperative seeds was similar but cross-comparison revealed that the left and right Recruitment sectors had stronger functional connections with the hand region of the sensorimotor cortex, while the right Suppression region displayed stronger functional connectivity with a bilateral set of parieto-frontal areas crucial for the integration of perceptual and cognitive hand-related sensorimotor processes required for goal-related hand actions. Our results suggest that analyzing data obtained in the intraoperative setting with resting state functional magnetic resonance imaging in healthy brains can yield useful insight into the roles of different premotor sectors directly involved in hand-object interaction.
术中清醒脑映射程序的发展在神经科学中越来越受到关注,因为它能够直接测试脑组织,而以前只能在非人类灵长类动物中进行。在最近的一项研究中,在这种环境下,通过在手操作任务执行期间对运动前皮层的不同区域进行直接电刺激,可以诱导出特定的效应。具体来说,在执行手操作任务时,直接施加于中央前回背侧区域的电刺激导致手部肌肉中的运动单位募集增加(募集区)。当电刺激更靠近中央前回的腹侧施加时,会产生相反的效果(抑制区)。我们研究了直接电刺激施加于中央前回的两个部位时,由于运动行为的不同影响是否源于其与其他脑区的功能连接的差异,这是通过静息态 fMRI 测量的。使用作为人类连接组计划一部分扫描的健康成年人,我们计算了每个种子区域的功能连接。两个术中种子的功能连接模式相似,但交叉比较显示,左、右募集区与运动感觉皮层的手部区域具有更强的功能连接,而右抑制区与双侧顶-额区域具有更强的功能连接,这些区域对于整合感知和认知手部相关的运动感觉过程至关重要,这些过程对于与目标相关的手部动作相关。我们的结果表明,在手操作环境中分析数据,并结合健康大脑的静息态功能磁共振成像,可以为直接参与手-物相互作用的不同运动前区的作用提供有用的见解。