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Visuomotor adaptation of voluntary step initiation in older adults.

机译:老年人自愿运动开始的视觉运动适应。

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It has been suggested that feedforward planning of gait and posture is diminished in older adults. Motor adaptation is one mechanism by which feedforward commands can be updated or fine-tuned. Thus, if feedforward mechanisms are diminished in older adults, motor adaptation is also likely to be limited. The purpose of the study was to compare the ability of healthy older versus young adults in generating a voluntary stepping motor adaptation in response to a novel visual sensory perturbation. We recorded stepping movements from 18 healthy older and 18 young adults during baseline and adaptation stepping blocks. During baseline, the stepping target remained stationary; in adaptation, a visual perturbation was introduced by shifting the target laterally during mid-step. We compared adaptation between groups, measured by improvements in endpoint accuracy and movement duration. Older adults adapted stepping accuracy similarly to young adults (accuracy improvement: 29.7 + or - 27.6% vs. 37.3 + or - 22.9%, older vs. young group respectively, p = 0.375), but showed significant slowness during movement. Thus older adults were able to achieve accuracy levels nearly equivalent to younger adults, but only at the expense of movement speed, at least during the early adaptation period (movement duration: 1143.7 + or - 170.6 ms vs. 956.0 + or - 74.6 ms, p < 0.001). With practice, however, they were able to reduce movement times and gain speed and accuracy to levels similar to young adults. These findings suggest older adults may retain the ability for stepping adaptations to environmental changes or novel demands, given sufficient practice.
机译:已经提出,老年人的步态和姿势的前馈计划会减少。电机自适应是一种可以更新或微调前馈命令的机制。因此,如果老年人的前馈机制减弱,运动适应也可能受到限制。这项研究的目的是比较健康的老年人和年轻人对新型视觉感官干扰产生自愿性步进运动适应的能力。我们记录了基线和适应性踏步运动中18位健康的老年人和18位年轻人的踏步运动。在基线期间,步进目标保持不变;在适应过程中,通过在中步过程中横向移动目标来引入视觉干扰。我们比较了各组之间的适应性,以端点准确性和运动持续时间的改善来衡量。老年人与年轻人的适应步伐准确性相似(准确性提高:分别为29.7 +或-27.6%与37.3 +或-22.9%,老年组与青年组,p = 0.375),但在运动过程中表现出明显的缓慢。因此,老年人至少在适应初期就可以达到几乎与年轻人相同的准确度水平,但是仅以运动速度为代价(运动持续时间:1143.7 +或-170.6 ms与956.0 +或-74.6 ms, p <0.001)。但是,通过实践,他们能够减少运动时间,并将速度和准确性提高到与年轻人相似的水平。这些发现表明,在足够的实践下,老年人可能仍具有适应环境变化或新要求的能力。

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