Analysis of the Force Characteristics of Seoi-nage based on the Performance Height of Elite Male Judo Athletes

Tae-Whan Kim, S. Kil, Sang-cheol Lee, S. Jang, S. Park
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引用次数: 1

Abstract

Seoi-nage is a representative technique frequently used in judo. Therefore, it is essential to identify how seoi-nage force characteristics change under various conditions. This study aimed to determine the differences in the force characteristics at different performance heights of elite male judo athletes. Twenty elite male judo athletes participated in the study. They were asked to perform seoi-nage at different heights (80 cm and 60 cm) using a rubber band as a practice situation. Data were collected by a force-measurement device with a rubber band connected to the device. The time variables, force value magnitude, force value rate, and force value angle in the vertical/horizontal planes were calculated and compared at 80 cm and 60 cm. There were significant differences in the force magnitude and the force vector vertical angle at 80 cm and 60 cm (p<.05). The force magnitude was greater at 60 cm than at 80 cm height. The force vector vertical angle was greater at 60 cm than at 80 cm height. In conclusion, seoi-nage at 80 cm height requires less force than at 60 cm; hence, judo players should perform the seoi-nage throw placing their center of mass lower than that of an opponent. Practicing seoi-nage repeatedly at 60 cm height under the training conditions is recommended. Seoi-nage at 60 cm height can be considered an effective training method for increasing the ability to handle difficult opponents.
基于成绩身高的优秀男子柔道运动员sei - age力特性分析
seoage是柔道中常用的代表性技术。因此,有必要确定在不同条件下的海上力特性是如何变化的。本研究旨在探讨优秀男子柔道运动员在不同表演高度时的力特性差异。20名优秀的男性柔道运动员参加了这项研究。他们被要求在不同的高度(80厘米和60厘米)使用橡皮筋作为练习情境。数据通过力测量装置收集,力测量装置上连接有橡皮筋。计算80 cm和60 cm垂直/水平平面上的时间变量、力值大小、力值速率和力值角。在80 cm和60 cm处的力大小和力矢量垂直角度差异有统计学意义(p< 0.05)。60 cm处的力大小大于80 cm处的力大小。力矢量垂直角度在60 cm处大于在80 cm处。综上所述,80 cm高度处的船体所需的力小于60 cm高度处;因此,柔道选手应该在投掷时将他们的重心放在比对手低的位置。建议在训练条件下,在60厘米的高度上反复练习。在60厘米的高度上进行“打球”,可以看作是提高对付难对付对手能力的有效训练方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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