Sato Sumire, Choi Julia T
Neuroscience and Behavior Program, University of Massachusetts Amherst, Amherst, MA, USA.
Department of Applied Physiology and Kinesiology, University of Florida, Gainesville, FL, USA.
Neuroscientist. 2022 Oct;28(5):469-484. doi: 10.1177/10738584211013723. Epub 2021 May 20.
Walking patterns are adaptable in response to different environmental demands, which requires neural input from spinal and supraspinal structures. With an increase in age, there are changes in walking adaptation and in the neural control of locomotion, but the age-related changes in the neural control of locomotor adaptation is unclear. The purpose of this narrative review is to establish a framework where the age-related changes of neural control of human locomotor adaptation can be understood in terms of reactive feedback and predictive feedforward control driven by sensory feedback during locomotion. We parse out the effects of aging on (a) reactive adaptation to split-belt walking, (b) predictive adaptation to split-belt walking, (c) reactive visuomotor adaptation, and (d) predictive visuomotor adaptation, and hypothesize that specific neural circuits are influenced differentially with age, which influence locomotor adaptation. The differences observed in the age-related changes in walking adaptation across different locomotor adaptation paradigms will be discussed in light of the age-related changes in the neural mechanisms underlying locomotion.
行走模式能够根据不同的环境需求进行适应性调整,这需要来自脊髓和脊髓上结构的神经输入。随着年龄的增长,行走适应性以及运动的神经控制会发生变化,但运动适应性的神经控制中与年龄相关的变化尚不清楚。本叙述性综述的目的是建立一个框架,在该框架中,可以从运动过程中由感觉反馈驱动的反应性反馈和预测性前馈控制的角度来理解人类运动适应性神经控制的年龄相关变化。我们剖析了衰老对以下方面的影响:(a)对分带行走的反应性适应,(b)对分带行走的预测性适应,(c)反应性视觉运动适应,以及(d)预测性视觉运动适应,并假设特定的神经回路会随着年龄的增长受到不同的影响,进而影响运动适应性。将根据运动背后神经机制的年龄相关变化,讨论在不同运动适应范式中观察到的与年龄相关的行走适应变化差异。