The Clinical Hospital of Chengdu Brain Science Institute, MOE Key Lab for Neuroinformation, University of Electronic Science and Technology of China, Chengdu, China.
School of Life Science and Technology, Center for Information in Medicine, University of Electronic Science and Technology of China, Chengdu, China.
Neural Plast. 2019 Jan 22;2019:1940123. doi: 10.1155/2019/1940123. eCollection 2019.
Electronic-sports (e-sports) is a form of organized, online, multiplayer video game competition, which requires both action skills and the ability and process of forming and adapting a strategy (referred to as strategization hereafter) to achieve goals. Over the past few decades, research has shown that video gaming experience has an important impact on the plasticity of the sensorimotor, attentional, and executive brain areas. However, little research has examined the relationship between e-sports experience and the plasticity of brain networks that are related to strategization. Using resting-state fMRI data and the local functional connectivity density (lFCD) analysis, this study investigated the relationship between e-sports experience (League of Legends [LOL] in this study) and brain plasticity by comparing between top-ranking LOL players and lower-ranking (yet experienced) LOL players. Results showed that the top-ranking LOL players had superior local functional integration in the executive areas compared to lower-ranking players. Furthermore, the top-ranking players had higher lFCD in the default mode areas, which have been found related to various subprocesses (e.g., memory and planning) essential for strategization. Finally, the top-ranking players' lFCD was related to their LOL expertise rank level, as indicated by a comprehensive score assigned by the gaming software based on players' gaming experience and expertise. Thus, the result showed that the local functional connectivity in central executive and default mode brain areas was enhanced in the top-ranking e-sports players, suggesting that e-sports experience is related to the plasticity of the central executive and default mode areas.
电子竞技(e-sports)是一种有组织的、在线的、多人视频游戏竞赛,它既需要动作技能,也需要形成和适应策略的能力和过程(以下简称策略制定)来实现目标。在过去的几十年里,研究表明,视频游戏体验对感觉运动、注意力和执行大脑区域的可塑性有重要影响。然而,很少有研究探讨电子竞技经验与策略制定相关的大脑网络可塑性之间的关系。本研究使用静息态 fMRI 数据和局部功能连接密度(lFCD)分析,通过比较顶级 LOL 玩家和低级别(但有经验)的 LOL 玩家,来研究电子竞技经验(本研究中的 LOL)与大脑可塑性之间的关系。结果表明,与低级别玩家相比,顶级 LOL 玩家在执行区域具有更高的局部功能整合。此外,顶级玩家在默认模式区域的 lFCD 更高,该区域已被发现与策略制定的各种子过程(例如记忆和计划)有关。最后,顶级玩家的 lFCD 与其 LOL 专业排名水平相关,这是由游戏软件根据玩家的游戏经验和专业知识综合得分来确定的。因此,结果表明,中央执行和默认模式大脑区域的局部功能连接在顶级电子竞技玩家中得到了增强,这表明电子竞技经验与中央执行和默认模式区域的可塑性有关。