Centre for Cognitive and Brain Sciences, Indian Institute of Technology Gandhinagar, Palaj 382355, India.
Department of Mechanical Engineering, Indian Institute of Technology Gandhinagar, Palaj 382355, India.
Hum Mov Sci. 2023 Aug;90:103121. doi: 10.1016/j.humov.2023.103121. Epub 2023 Jun 28.
Upper-limb complex movements constitute a major part of our daily activities. Research shows complex movements are generated by sequences of movement elements represented by a unimodal bell-shaped velocity curve. We utilized this understanding in the field of motor skill acquisition and hypothesized that practicing a movement element of a complex movement trajectory will facilitate the performance on the respective complex movement trajectory. To test this, we designed an experiment where the control group learned a full complex trajectory, whereas the two elemental groups learned two different movement elements of the complex trajectory. The two main outcome measures explaining the performance were accuracy and speed. The elemental groups, after training on movement elements, significantly improved their speed and accuracy when tested on the full complex trajectory. The result illustrated that training on a movement element of a complex trajectory benefited the performance of the full complex trajectory. The two elemental groups showed similar improvements in the performance of the complex motor skill, despite obtaining training on different movement elements of the same complex movement. The findings show that complex movements can be learned by practicing their movement elements.
上肢复杂运动构成了我们日常生活的主要部分。研究表明,复杂运动是由运动元素序列产生的,这些运动元素由单峰钟形速度曲线表示。我们在运动技能习得领域利用了这一认识,并假设练习复杂运动轨迹的运动元素将有助于相应复杂运动轨迹的表现。为了验证这一点,我们设计了一个实验,对照组学习完整的复杂轨迹,而两个元素组学习复杂轨迹的两个不同运动元素。解释表现的两个主要结果衡量标准是准确性和速度。在元素组训练运动元素后,在测试完整复杂轨迹时,他们的速度和准确性显著提高。结果表明,在复杂轨迹的运动元素上进行训练有助于提高完整复杂轨迹的表现。尽管在同一复杂运动的不同运动元素上接受了训练,但两个元素组在复杂运动技能的表现上都有相似的提高。研究结果表明,复杂运动可以通过练习其运动元素来学习。