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首页> 外文期刊>Computers in Human Behavior >The effect of expertise, training and neurostimulation on sensory-motor skill in esports
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The effect of expertise, training and neurostimulation on sensory-motor skill in esports

机译:专业知识,培训和神经刺激对Esports感官运动技能的影响

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摘要

Recently, increased attention has been directed to the brain to better understand how motor skill expertise develops. One promising technique purported to accelerate motor skill improvement is transcranial direct current stimulation (tDCS). While simple fine motor tasks involving the hands and fingers are most frequently used to investigate the role of tDCS on motor skill learning, less work has examined the role of tDCS on complex sensori-motor tasks applicable to occupational, sport, and daily living activities. Esports require a high degree of sensori-motor control and have become one of the most popular forms of digital entertainment worldwide. Currently, no research has quantified the development of motor skill expertise in esports or whether tDCS can enhance skill improvement. The current study aimed to first differentiate the sensorimotor performance of a key gameplay skill among esports players of different skill levels. Secondly, we quantified the training effect on performance. Finally, we investigated the effect of tDCS on performance improvements. We hypothesized that esport players would perform superiorly compared to novice gamers, that all groups would be able to improve their performance through training, and that tDCS would enhance training induced performance improvements. We found that performance on a single fundamental esport skill can differentiate expertise among novice and skilled players, that training can significantly improve performance among all expertise levels and that tDCS preferentially accelerates the performance improvements of novice players. The implications of this work, specifically regarding the temporal application of tDCS during complex motor skill learning and rehabilitation, are discussed.
机译:最近,提高了大脑的注意,以更好地了解汽车技能专业知识如何发展。一种有望的技术声称加速机动技能改善是经颅直流刺激(TDC)。虽然涉及手指和手指的简单精细电机任务最常用于调查TDC对机动技能学习的作用,但较少的工作已经审查了TDC对适用于职业,运动和日常生活活动的复杂感受机任务的作用。 Esports需要高度的传感器电机控制,并成为全球最受欢迎的数字娱乐形式之一。目前,没有研究过量的ESPORTS运动技能专业知识的发展或TDC是否可以提高技能改进。目前的研究旨在首先在不同技能水平的竞争者中区分对斯托斯波斯的播放器中的关键游戏技能的传感器性能。其次,我们量化了对性能的培训效果。最后,我们调查了TDC对性能改进的影响。我们假设Esport玩家与新手游戏玩家相比,所有群体都能够通过培训改善其表现,而TDC将提高培训诱导性能改进。我们发现,单一基本埃斯波特技能的性能可以区分新手和技术人员之间的专业知识,培训可以在所有专业水平之间显着提高性能,而TDC优先加速新手球员的绩效改进。讨论了这项工作的影响,特别是关于TDC在复杂的机动技能学习和康复期间的时间应用。

著录项

  • 来源
    《Computers in Human Behavior》 |2021年第8期|106782.1-106782.13|共13页
  • 作者单位

    Univ Limerick Irish Software Res Ctr Lero Limerick Ireland|Univ Limerick Dept Phys Educ & Sport Sci Limerick Ireland;

    Univ Limerick Irish Software Res Ctr Lero Limerick Ireland|Univ Limerick Dept Phys Educ & Sport Sci Limerick Ireland;

    Ecole Polytech Fed Lausanne Quartier Innovat Daniel Borel Innovat Ctr Logitech Lausanne Switzerland;

    Ecole Polytech Fed Lausanne Quartier Innovat Daniel Borel Innovat Ctr Logitech Lausanne Switzerland;

    Univ Limerick Irish Software Res Ctr Lero Limerick Ireland|Univ Limerick Dept Phys Educ & Sport Sci Limerick Ireland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Neurocognition; Motor control; Motor learning; Brain stimulation; HCI;

    机译:神经故障;电机控制;运动学习;脑刺激;HCI;

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