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Functional MRI Reveals Locomotion-Control Neural Circuits in Human Brainstem

机译:功能性MRI在人脑干中揭示了运动控制神经电路

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The cuneiform nucleus (CN) and the pedunculopontine nucleus (PPN) in the midbrain control coordinated locomotion in vertebrates, but whether similar mechanisms exist in humans remain to be elucidated. Using functional magnetic resonance imaging, we found that simulated gait evoked activations in the CN, PPN, and other brainstem regions in humans. Brain networks were constructed for each condition using functional connectivity. Bilateral CN–PPN and the four pons–medulla regions constituted two separate modules under all motor conditions, presenting two brainstem functional units for locomotion control. Outside- and inside-brainstem nodes were connected more densely although the links between the two groups were sparse. Functional connectivity and network analysis revealed the role of brainstem circuits in dual-task walking and walking automaticity. Together, our findings indicate that the CN, PPN, and other brainstem regions participate in locomotion control in humans.
机译:中脑控制在脊椎动物中的楔形细胞核(CN)和Pedinulopontine核(PPN),但是否仍然阐明类似机制的存在机制。使用功能磁共振成像,我们发现模拟步态诱发了人类中CN,PPN和其他脑干区域的激活。使用功能连接为每个条件构建脑网络。双侧CN-PPN和四个PONS-MEDULLA区域在所有电机条件下构成了两个单独的模块,呈现两个用于运动机器的脑干功能单位。虽然两组之间的链接稀疏,但与内部脑​​干节点更密集地连接。功能连接和网络分析揭示了脑干电路在双任务行走和行走自动的作用。我们的研究结果在一起表明CN,PPN和其他脑干区域参与人类的运动量控制。

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