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Intermanual coordination: from behavioural principles to neural-network interactions.

机译:人际协调:从行为原理到神经网络互动。

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Locomotion in vertebrates and invertebrates has a long history in research as the most prominent example of interlimb coordination. However, the evolution towards upright stance and gait has paved the way for a bewildering variety of functions in which the upper limbs interact with each other in a context-specific manner. The neural basis of these bimanual interactions has been investigated in recent years on different scales, ranging from the single-cell level to the analysis of neuronal assemblies. Although the prevailing viewpoint has been to assign bimanual coordination to a single brain locus, more recent evidence points to a distributed network that governs the processes of neural synchronization and desynchronization that underlie the rich variety of coordinated functions. The distributed nature of this network accounts for disruptions of interlimb coordination across various movement disorders.
机译:脊椎动物和无脊椎动物的运动作为交配协调的最突出例子,已有很长的研究历史。但是,朝着挺直的姿势和步态的发展为各种功能的混乱铺平了道路,在这些功能中,上肢以特定于上下文的方式相互交互。近年来,已经在从单细胞水平到神经元组装分析的不同规模上研究了这些双向相互作用的神经基础。尽管目前流行的观点是将双向协调分配给单个脑部轨迹,但最近的证据表明,分布式神经网络支配着神经同步和去同步的过程,这些过程是协调功能丰富的基础。该网络的分布式性质解释了跨各种运动障碍的肢体协调的破坏。

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