摘要
探索不同水平定向运动选手心理旋转能力对地图识别效率的影响,为科学制定专项运动训练方案提供理论依据。研究选取专家和新手定向运动选手作为被试者,进行正常方位与旋转方位以及不同地图难度特征条件下选手的识图认知任务测试。结果表明:(1)心理旋转与地图难度均制约着定向运动选手的识图效率,随着心理旋转与地图难度认知压力的加大,定向运动选手识图效率降低,专家选手表现出较好专项认知优势。(2)定向运动选手识图效率随地图旋转角度加大而降低,专家组好于新手组。在定向运动选手专项认知训练中应充分考虑心理旋转与地图难度的认知因素,注重对心理旋转等空间认知能力的专项训练。
To explore the influence of mental rotation ability of orienteering athletes at different levels on map recognition efficiency,so as to provide a theoretical basis for the scientific formulation of professional sports training programs.In this study,expert and novice orienteering players were selected as subjects to test the cognitive task of map recognition under the conditions of normal azimuth,rotation azimuth and different map difficulty characteristics.The results showed that:(1)Both mental rotation and map difficulty restricted the map recognition efficiency of orienteering players.with the increase of cognitive pressure of psychological rotation and map difficulty,the map recognition efficiency of orienteering athletes decreased,and expert athletes showed better professional cognitive advantages.(2)The map recognition efficiency of orienteering players decreased with the increase of map rotation angle,and the expert group was better than the novice group.The research reveals that in the professional cognitive training of orienteering players,we should fully consider the cognitive factors of mental rotation and map difficulty,and pay attention to the professional training of spatial cognitive ability such as mental rotation.
作者
宋杨
唐思洁
缐红
SONG Yang;TANG Si-Jie;XIAN Hong(Department of Sports Management,Tianjin University of Finance and Economics,Tianjin 300222,China;School of Physical Education,Shanxi Normal University,Xian 710119,China;Department of Student Affairs,Tianjin University of Finance and Economics,Tianjin 300222,China)
出处
《体育学刊》
CAS
CSSCI
北大核心
2021年第4期125-130,共6页
Journal of Physical Education
基金
教育部人文社会科学规划基金项目(16YJCZH063)
中央高校基本科研业务费专项资金项目。
关键词
定向运动
专项认知训练
心理旋转
识图效率
orienteering
professional cognitive training
mental rotation
map recognition efficiency