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The capacity to learn new motor and perceptual calibrations develops concurrently in childhood

机译:在儿童时期学习新的运动和知觉校准的能力会同时发展

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摘要

Learning new movements through an error-based process called motor adaptation is thought to involve multiple mechanisms which are still largely not understood. Previous studies have shown that young children adapt movement more slowly than adults, perhaps supporting the involvement of distinct neural circuits that come online at different stages of development. Recent studies in adults have shown that in addition to recalibrating a movement, motor adaptation also leads to changes in the perception of that movement. However, we do not yet understand the relationship between the processes that underlie motor and perceptual recalibration. Here we studied motor and perceptual recalibration with split-belt walking adaptation in adults and children aged 6–8 years. Consistent with previous work, we found that this group of children adapted their walking patterns more slowly than adults, though individual children ranged from slow to adult-like in their adaptation rates. Perceptual recalibration was also reduced in the same group of children compared to adults, with individual children ranging from having no recalibration to having adult–like recalibration. In sum, faster motor adaptation and the ability to recalibrate movement perception both come online within a similar age-range, raising the possibility that the same sensorimotor mechanisms underlie these processes.
机译:通过基于错误的过程(称为运动适应)来学习新动作被认为涉及多种机制,这些机制在很大程度上仍未被理解。以前的研究表明,年幼的孩子比成年人适应运动的速度更慢,这也许支持了在发育的不同阶段出现的不同神经回路的参与。成年人的最新研究表明,除了重新校准动作之外,运动适应还导致该动作的感知发生变化。但是,我们尚不了解运动和知觉重新校准所基于的过程之间的关系。在这里,我们研究了在6-8岁的成年人和儿童中采用皮带分离行走适应的运动和知觉重新校准。与以前的工作一致,我们发现这组儿童的步行方式比成年人适应速度慢,尽管个别儿童的适应率从慢到成年人。与成人相比,同一组儿童的知觉重新校准也有所减少,个别儿童的范围从不重新校准到像成人一样的重新校准。总之,更快的运动适应能力和重新校准运动知觉的能力都在相似的年龄范围内出现,从而增加了在这些过程中使用相同的感觉运动机制的可能性。

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