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首页> 外文期刊>Brain research >Balance maintenance as an acquired motor skill: Delayed gains and robust retention after a single session of training in a virtual environment
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Balance maintenance as an acquired motor skill: Delayed gains and robust retention after a single session of training in a virtual environment

机译:平衡维护作为获取的机动技能:在虚拟环境中培训单一会话后延迟收益和鲁棒保留

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Does the learning of a balance and stability skill exhibit time-course phases and transfer limitations characteristic of the acquisition and consolidation of voluntary movement sequences? Here we followed the performance of young adults trained in maintaining balance while standing on a moving platform synchronized with a virtual reality road travel scene. The training protocol included eight 3 min long iterations of the road scene. Center of Pressure (CoP) displacements were analyzed for each task iteration within the training session, as well as during tests at 24h, 4 weeks and 12 weeks post-training to test for consolidation phase ("offline') gains and assess retention. In addition, CoP displacements in reaction to external perturbations were assessed before and after the training session and in the 3 subsequent post-training assessments (stability tests). There were significant reductions in CoP displacements as experience accumulated within session, with performance stabilizing by the end of the session. However, CoP displacements were further reduced at 24 h post-training (delayed "offline" gains) and these gains were robustly retained. There was no transfer of the practice-related gains to performance in the stability tests. The time-course of learning the balance maintenance task, as well as the limitation on generalizing the gains to untrained conditions, are in line with the results of studies of manual movement skill learning. The current results support the conjecture that a similar repertoire of basic neuronal mechanisms of plasticity may underlay skill (procedural, "how to" knowledge) acquisition and skill memory consolidation in voluntary and balance maintenance tasks. (C) 2015 Elsevier B.V. All rights reserved.
机译:学习平衡和稳定技能是否表现出时序阶段和转移限制的获取和整合自愿运动序列的特征?在这里,我们遵循在与虚拟现实公路旅行场景同步的移动平台上保持平衡的年轻成年人的表现。培训协定包括八个3分钟的道路场景迭代。压力中心(COP)分析培训课程中的每个任务迭代的流离失所,以及在24小时,4周和12周的测试期间进行培训,以进行整合阶段(“离线”)收益和评估保留。在此外,在培训课程之前和之后评估对外扰动反应的警察位移,并在3次培训后的培训后​​评估(稳定性测试)中进行了评估。缔约方会议的经验,截止日期的经验,绩效稳定会议的。然而,训练后24小时进一步减少了警察流离失所(延迟“离线”收益),这些收益受到稳健保留。在稳定性测试中没有与实践相关的增益转移到性能。时间 - 学习平衡维护任务,以及对未经训练条件的概率概括的限制,符合手册研究的结果运动技能学习。目前的结果支持猜想塑性塑性基本神经元机制的类似曲目可能是技能(程序,“如何在自愿和平衡维护任务中”知识)获取和技能内存整合。 (c)2015 Elsevier B.v.保留所有权利。

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