高性能实践流程

G. Roels
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引用次数: 12

摘要

尽管运动和认知学习与耐力运动训练各有特点,但它们都涉及重复练习,这是它们的共同点。虽然大量的研究致力于练习对表现的影响,但对最佳练习策略知之甚少。在本文中,我们对技能获取和保留的实践过程进行了建模,并优化了其配置文件,以便在预定义的日期内实现绩效最大化。对于技能习得,我们发现最优的过程包括多个练习阶段的增加和减少,产生与分配练习原则一致的u型努力,并且容易遗忘的技能(如认知技能)比容易保留的技能(如连续运动技能)在阶段之间的过渡更顺畅。特别是对于后者,在最终的高强度压力之前应该有一段较长的休息时间。对于技能的保留,最佳的练习策略包括持续努力(对于容易忘记的技能)或脉冲努力(对于容易保留的技能)的循环,与交替的压力和休息原则相一致。因此,我们的参数模型表明,当常用的高性能练习策略确实是最佳的。这篇论文被Serguei Netessine,运营管理接受。
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High-Performance Practice Processes
Despite their idiosyncrasies, motor and cognitive learning and endurance sports training have in common that they involve repeated practice. While considerable research has been devoted to the effect of practice on performance, little is known about optimal practice strategies. In this paper, we model the practice process for both skill acquisition and retention, and optimize its profile to maximize performance on a predefined date. For skill acquisition, we find that the optimal process involves multiple phases of practice increase and decrease, yielding U-shaped effort consistent with the principle of distributing practice, and that the transitions between phases are smoother for skills that are easily forgotten (e.g., cognitive skills) than for those that are easily retained (e.g., continuous motor skills). In particular for the latter, an extended period of rest should precede an ultimate high-intensity stress. For skill retention, the optimal practice strategy consists of cycles of either constant effort (for skills that are easily forgotten) or pulsed effort (for skills that are easily retained) consistent with the principle of alternating stress and rest. Our parametric model thus indicates when commonly used high-performance practice strategies are indeed optimal. This paper was accepted by Serguei Netessine, operations management.
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