Department of Neuroscience, University of Minnesota, Minneapolis, MN, USA.
Graduate Program in Neuroscience, University of Minnesota, Minneapolis, MN, USA.
Nat Commun. 2024 Sep 6;15(1):7792. doi: 10.1038/s41467-024-51816-6.
The role of the cerebral cortex in self-initiated versus sensory-driven movements is central to understanding volitional action. Whether the differences in these two movement classes are due to specific cortical areas versus more cortex-wide engagement is debated. Using wide-field Ca imaging, we compared neural dynamics during spontaneous and motorized treadmill locomotion, determining the similarities and differences in cortex-wide activation and functional connectivity (FC). During motorized locomotion, the cortex exhibits greater activation globally prior to and during locomotion starting compared to spontaneous and less during steady-state walking, during stopping, and after termination. Both conditions are characterized by FC increases in anterior secondary motor cortex (M2) nodes and decreases in all other regions. There are also cortex-wide differences; most notably, M2 decreases in FC with all other nodes during motorized stopping and after termination. Therefore, both internally- and externally-generated movements widely engage the cortex, with differences represented in cortex-wide activation and FC patterns.
大脑皮层在自我发起与感觉驱动运动中的作用对于理解意志行动至关重要。这两种运动类型的差异是由于特定的皮层区域还是更广泛的皮层参与存在争议。我们使用宽场 Ca 成像比较了自发和电动跑步机运动期间的神经动力学,确定了皮层广泛激活和功能连接(FC)的相似性和差异。在电动运动期间,与自发运动相比,皮层在运动开始前和运动开始时表现出更大的全局激活,而在稳态行走、停止和停止后则较小。两种情况的特征均为前次级运动皮层(M2)节点的 FC 增加,而所有其他区域的 FC 减少。也存在皮层广泛的差异;最显著的是,在电动运动停止和停止后,M2 的 FC 与所有其他节点的 FC 均减少。因此,内部和外部产生的运动都广泛地参与皮层,其差异表现在皮层广泛的激活和 FC 模式上。
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