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Plasticity of Sensorimotor Networks: Multiple Overlapping Mechanisms

机译:感觉运动网络的可塑性:多种重叠机制

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摘要

Redundancy is an important feature of the motor system, as abundant degrees of freedom are prominent at every level of organization across the central and peripheral nervous systems, and musculoskeletal system. This basic feature results in a system that is both flexible and robust, and which can be sustainably adapted through plasticity mechanisms in response to intrinsic organismal changes and dynamic environments. While much early work of motor system organization has focused on synaptic-based plasticity processes that are driven via experience, recent investigations of neuron–glia interactions, epigenetic mechanisms and large-scale network dynamics have revealed a plethora of plasticity mechanisms that support motor system organization across multiple, overlapping spatial and temporal scales. Furthermore, an important role of these mechanisms is the regulation of intrinsic variability. Here, we review several of these mechanisms and discuss their potential role in neurorehabilitation.
机译:冗余是运动系统的重要特征,因为在中枢神经系统和周围神经系统以及肌肉骨骼系统的每个组织层次上,丰富的自由度都十分突出。这个基本特征导致系统既灵活又健壮,并且可以通过可塑性机制可持续地适应内在的生物变化和动态环境。尽管电机系统组织的许多早期工作都集中在通过经验驱动的基于突触的可塑性过程中,但是最近对神经元-神经胶质相互作用,表观遗传机制和大规模网络动力学的研究表明,有大量可塑性机制可以支持电机系统的组织。跨越多个重叠的时空尺度。此外,这些机制的重要作用是内在变异性的调节。在这里,我们回顾这些机制中的几种,并讨论它们在神经康复中的潜在作用。

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