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揭示镜像绘画任务中的学习策略:一项使用熵的运动稳定性和复杂性的单案例研究。

Unveiling Learning Strategies in the Mirror-Drawing Task: A Single-Case Study of Movement Stability and Complexity Using Entropy.

作者信息

Murakami Hiroki, Yamada Norimasa

机构信息

Faculty of Interdisciplinary Economics Department of Interdisciplinary Economics, Kinjo University, 1200 Kasama-machi, Hakusan 924-8511, Ishikawa, Japan.

Graduate School of Health and Sport Sciences, Chukyo University, 101 Tokodachi, Kaizu-cho, Toyota 470-0393, Aichi, Japan.

出版信息

Entropy (Basel). 2025 Apr 30;27(5):484. doi: 10.3390/e27050484.

Abstract

The mirror-drawing task has been widely used in motor learning research to investigate procedural memory and movement control. However, studies have primarily focused on global performance measures such as movement time and the number of errors and lack insight into localized learning patterns. This case study aimed to analyze motor learning characteristics by combining traditional measures with entropy analysis, a method for capturing movement stability and complexity. Using a star-shaped figure divided into 12 segments, a single participant performed 100 trials of the mirror-drawing task. The movement coordinates were recorded at 60 Hz using a stylus on a mirrored tablet screen. The results showed that movement time decreased over the trials and entropy values showed an initial increase, followed by a decrease, suggesting exploratory behavior and subsequent stabilization. In particular, the interference side segments requiring complex visual-motor transformations showed prolonged instability and delayed control stabilization compared with the noninterference side segments. The integration of entropy analysis allowed a clearer visualization of the trial-and-error phases and movement instability, providing novel insights into the motor learning process. These findings, though limited to a single case, contribute to the understanding of adaptive movement control strategies and suggest that local learning properties should be considered in skill acquisition research.

摘要

镜像绘画任务已在运动学习研究中被广泛用于探究程序性记忆和运动控制。然而,研究主要集中在诸如运动时间和错误数量等整体性能指标上,而缺乏对局部学习模式的深入了解。本案例研究旨在通过将传统指标与熵分析相结合来分析运动学习特征,熵分析是一种用于捕捉运动稳定性和复杂性的方法。使用一个被分成12个部分的星形图形,一名参与者进行了100次镜像绘画任务试验。使用触控笔在带镜子的平板屏幕上以60赫兹的频率记录运动坐标。结果表明,运动时间在试验过程中减少,熵值呈现出先增加后减少的趋势,这表明存在探索性行为以及随后的稳定过程。特别是,与非干扰侧部分相比,需要复杂视觉运动转换的干扰侧部分表现出更长时间的不稳定性和延迟的控制稳定。熵分析的整合使得试错阶段和运动不稳定性能够更清晰地可视化,为运动学习过程提供了新的见解。这些发现虽然仅限于单个案例,但有助于理解适应性运动控制策略,并表明在技能习得研究中应考虑局部学习特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f82/12111260/95e73043346c/entropy-27-00484-g001.jpg

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