...
首页> 外文期刊>Advances in Physical Education >Effects of Differences in Manipulation and Supporting Legs and Moving Target Speed on a Visual Tracking Test Using Center of Pressure
【24h】

Effects of Differences in Manipulation and Supporting Legs and Moving Target Speed on a Visual Tracking Test Using Center of Pressure

机译:操纵和支撑腿的差异以及运动目标速度对使用压力中心的视觉跟踪测试的影响

获取原文

摘要

The human limbs are paired organs, each capable of independent movement. Functional laterality is found in the upper limbs when writing letters or throwing a ball, etc. This study aimed to examine the effects of differences in manipulation leg (ML), defined as the leg used when kicking a ball and supporting leg (SL), as the contralateral leg, and moving target speed on a visual tracking test using center of pressure (COP). We included 20 healthy male students (age, 22.0 ± 4.9 years; height, 172.4 ± 3.2 cm, and weight, 66.2 ± 5.0 kg) without lower limb or eye disorders. During the tracking test, subjects pursued a target moving on the Y-axis by COP. We selected 0.083 and 0.050 Hz frequencies to examine the effect of different target speeds. An evaluation variable was defined as total errors between moving targets and COP over 30 s. It was assumed that individuals with smaller errors would be superior during tracking tests. A significant difference was found between means for bilateral and unilateral stance (ML or SL) at both frequencies but not between ML and SL, and in all standing conditions, 0.083 Hz showed a smaller error than 0.050 Hz. In conclusion, regardless of the speed of the moving target, performance of the visual tracking test was superior in bilateral than unilateral stance, and there was no difference between ML and SL. Regardless of stance, test performance reduced with faster target speed, particularly with unilateral stance (about 29%).
机译:人体四肢是成对的器官,每个器官都可以独立运动。书写字母或扔球等时在上肢发现功能性偏侧性。这项研究旨在检查操作腿(ML)的差异的影响,ML是指踢球和支撑腿(SL)时使用的腿,作为对侧腿,并通过压力中心(COP)在视觉跟踪测试中移动目标速度。我们纳入了20名健康的男学生(年龄22.0±4.9岁;身高172.4±3.2厘米,体重66.2±5.0公斤),没有下肢或眼睛疾病。在跟踪测试中,受试者通过COP追踪了沿Y轴移动的目标。我们选择了0.083和0.050 Hz频率来检查不同目标速度的影响。评价变量定义为在30秒内移动目标与COP之间的总误差。假设误差较小的个体在跟踪测试期间会更胜一筹。发现在两种频率下,双侧和单侧姿态的均值(ML或SL)之间存在显着差异,但在ML和SL之间没有差异,并且在所有站立条件下,0.083 Hz的误差均小于0.050 Hz。总之,无论移动目标的速度如何,视觉跟踪测试的性能在双边方面都优于单边立场,并且ML和SL之间没有差异。无论采用哪种姿态,测试性能都会随着目标速度的提高而降低,特别是在采用单侧姿态时(约29%)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号