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太极拳中手臂动作的生物力学分析。

Biomechanical Analysis of Arm Manipulation in Tai Chi.

机构信息

NingboTech University, Zhejiang, Ningbo 315100, China.

Jinhua Polytechnic, Zhejiang, Jinghua 321000, China.

出版信息

Comput Intell Neurosci. 2022 Jun 17;2022:2586716. doi: 10.1155/2022/2586716. eCollection 2022.

Abstract

In order to explore the kinematics and muscle force characteristics of competitive Taijiquan arm manipulation, and solve the problems of arm trajectory and control in the process of manipulation, this study puts forward the sports biomechanical analysis of arm manipulation in competitive Taijiquan. The technical characteristics and muscle force characteristics of 15 athletes from the competitive Taijiquan team of Xi'an Institute of physical education were studied. Use Excel 2007 and SPSS17.0 to statistically analyze and process the original data. According to the actual needs, the data indicators are summarized. The combined movements of competitive Taijiquan arm manipulation are captured through high-speed photography, and the kinematic data are statistically analyzed, mainly from the two aspects of action amplitude change and action braking. The results show the action track length, relative track length, and action track length of each plane of the two combined hands. The order of the two combined action tracks is: combination 1 > combination 2, in which the action track in the sagittal plane is the longest in combination 1, and it can also be considered that the motion amplitude in the sagittal plane is the largest in combination 1. The average acceleration of group A in the first beat is 0.51 m/s smaller than that of group B, and the value is 0.22 m/s smaller. Therefore, the deceleration of group A is larger than that of group B, and the braking capacity of group A is slightly stronger than that of group B. In the second beat, the average acceleration of group B is 1.5722 m/s larger than that of group A, and the value is 0.210 m/s larger. The average acceleration of group A in the third, fourth, fifth, and sixth beats is 0.9, 3.728, 0.57, and 0.837 m/s smaller than that of group B, and the values are 0.466, 0.174, 0.250, and 0.003 m/s smaller, indicating that the braking capacity of group A in the third, fourth, fifth, sixth, and eighth beats is slightly stronger than that of group B. In the braking of each beat in combination 1 and combination 2 of group AB, the braking ability of arm manipulation of group A is stronger than that of group B. In competitive Taijiquan, the movement techniques of manipulation include: bouncing technology, braking technology, and control technology. For arm manipulation, athletes should have the ability of "braking" technology. In the correlation analysis of movement track length, RMS and I EMG, the score of athletes in group A is high, and there is no correlation between movement track length and RMS. There is a significant correlation between RMS and movement track length in group B, and the correlation degree is moderate. This shows that when the movement of group B athletes is completed, the muscles are in a state of tension, the movement skills are not mastered well, and the energy saving is not achieved. During training, we should pay more attention to the proprioception of muscles and form a correct way of muscle exertion.

摘要

为了探讨竞技太极拳手臂动作的运动学和肌肉力量特征,解决手臂动作过程中的轨迹和控制问题,本研究提出了竞技太极拳手臂动作的运动生物力学分析。对西安体育学院竞技太极拳队 15 名运动员的技术特点和肌肉力量特点进行了研究。使用 Excel 2007 和 SPSS17.0 对原始数据进行统计分析和处理。根据实际需要,总结数据指标。通过高速摄影捕捉竞技太极拳手臂动作的组合动作,并对运动学数据进行统计分析,主要从动作幅度变化和动作制动两个方面进行分析。结果表明,两个双手组合动作的轨迹长度、相对轨迹长度和各个平面的轨迹长度。两个组合动作轨迹的顺序为:组合 1>组合 2,其中组合 1 的矢状面动作轨迹最长,也可以认为组合 1 的矢状面动作幅度最大。组 A 在第一拍的平均加速度比组 B 小 0.51 m/s,值小 0.22 m/s。因此,组 A 的减速大于组 B,组 A 的制动能力略强于组 B。在第二拍中,组 B 的平均加速度比组 A 大 1.5722 m/s,值大 0.210 m/s。组 A 在第三、四、五、六拍的平均加速度分别比组 B 小 0.9、3.728、0.57 和 0.837 m/s,值分别小 0.466、0.174、0.250 和 0.003 m/s,表明组 A 在第三、四、五、六、八拍的制动能力略强于组 B。在组合 1 和组合 2 的每一拍制动中,组 A 的手臂制动能力强于组 B。在竞技太极拳中,手臂动作的动作技术包括:弹跳技术、制动技术和控制技术。对于手臂动作,运动员应具备“制动”技术的能力。在运动轨迹长度、RMS 和 IEMG 的相关性分析中,组 A 运动员的得分较高,运动轨迹长度与 RMS 无相关性。组 B 的 RMS 与运动轨迹长度有显著相关性,相关性适中。这表明,当组 B 运动员完成运动时,肌肉处于紧张状态,运动技能掌握不佳,未能达到节能效果。在训练中,应更加注重肌肉本体感觉,形成正确的肌肉用力方式。

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