Motor Control Laboratory, Research Center for Movement Control and Neuroplasticity, Department of Kinesiology, KU Leuven, Leuven, Belgium.
J Neurophysiol. 2012 Aug;108(4):1149-57. doi: 10.1152/jn.00018.2012. Epub 2012 May 23.
Human walking is highly adaptable, which allows us to walk under different circumstances. With aging, the probability of falling increases, which may partially be due to a decreased ability of older adults to adapt the gait pattern to the needs of the environment. The literature on visuomotor adaptations during reaching suggests, however, that older adults have little problems in adapting their motor behavior. Nevertheless, it may be that adaptation during a more complex task like gait is compromised by aging. In this study, we investigated the ability of young (n = 8) and older (n = 12) adults to adapt their gait pattern to novel constraints with a split-belt paradigm. Findings revealed that older adults adapted less and more slowly to split-belt walking and showed fewer aftereffects than young adults. While young adults showed a fast adjustment of the relative time spent in swing for each leg older adults failed to do so, but instead they were very fast in manipulating swing speed differences between the two legs. We suggest that these changes in adaptability of gait due to aging stem from a mild degradation of cortico-cerebellar pathways (reduced adaptability) and cerebral structures (decreased ability to change gait cycle timing). However, an alternative interpretation may be that the observed reduced adaptation is a compensatory strategy in view of the instability induced by the split-belt paradigm.
人类行走具有高度的适应性,这使我们能够在不同的环境下行走。随着年龄的增长,跌倒的概率增加,这可能部分是由于老年人适应步态模式以适应环境需求的能力下降。然而,有关在伸手过程中进行视动适应的文献表明,老年人在适应其运动行为方面几乎没有问题。尽管如此,在像步态这样更复杂的任务中,适应可能会因年龄而受到影响。在这项研究中,我们使用分带范式研究了年轻人(n = 8)和老年人(n = 12)适应新的步态模式约束的能力。研究结果表明,老年人适应分带行走的速度较慢,适应性较差,并且比年轻人表现出的后效更少。虽然年轻人能够快速调整每条腿的摆动时间相对时间,但老年人却无法做到这一点,而是能够非常快速地调整两条腿之间的摆动速度差异。我们认为,由于衰老导致的步态适应性的这些变化源于皮质-小脑途径(适应性降低)和大脑结构(改变步态周期时间的能力降低)的轻度退化。然而,另一种解释可能是,鉴于分带范式引起的不稳定性,观察到的适应性降低是一种补偿策略。