不平衡力矩训练对起跳起落和跳远成绩的生物力学变量的影响

IF 0.5 Q4 SPORT SCIENCES
A. Majidi, A. Jabr
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引用次数: 0

摘要

Sareeh Abudlkareem Abudlsaheeb Alfadly,巴格达大学(伊拉克)多年来,通过各种特殊的力量训练来提高运动员的跳远能力,但所有这些训练都没有考虑到运动员在各个阶段运动路径的重要性。将此定义为本研究的问题,提出根据两个阶段的表现,采用非平衡力量时刻对跳远和重力时刻的工作肌肉进行训练。这两个阶段与瞬时推力、加速度、速度和质量定律密切相关,它们直接影响青年跳远的生物力学变量和成绩。不同高度和角度的盒子用于跳跃,并增加了玩家的重量,以发展手臂,躯干和腿部的力量。目的是确定起飞和降落的一些生物力学变量的影响。实验方法采用每周三次、重复10次的训练计划,对跳远项目进行录像。3个月后进行后测。结果表明,这些训练不仅影响最后一步速度的发展,而且影响起跳的角度和速度。此外,训练计划发展了起跳时的攻角,改变了动力和着陆生物力学,这些被认为是在跳远中保持最佳距离的重要因素。生物力学变量的提高对于跳远领跑组有了显著的发展,发生在经过测试和冲击力力量训练和控制身体部位的运动之后。训练不平衡力对控制惯性矩和角加速度的变化起着重要的作用。在人体结构的杠杆系统中,“最重要的”注意是肌肉力量所占的比例非常高,坚定的决心会产生一定的阻力。改变臂杆连续改变铰链角度影响产生这样的效果,由于关节角度的改变,臂力输出的变化需要适当的阻力变化。这有助于发展这些肌肉的效率,通过暴露在肌肉训练的努力,所有身体部位和刀的性能和机动性,同时给予身体的自然素质,作为一个弹丸在运动(Hang)。同时,根据力量训练的不平衡力矩尽可能地与表现相似,交易以最大的精度进行,实验组在相同的运动水平上,在关节的运动方向和程度上,以及运动速度的释放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect unbalance torque training in some biomechanics variables for tack off and landing and long jump achievement
The Effect Of Unbalance Torque Training In Some Biomechanics Variables For Take-Off And Landing In Long Jump Achievement Sareeh Abudlkareem Abudlsaheeb Alfadly,, Univ. of Baghdad (Iraq) Varying special strength exercises to develop the athlete's abilities in long jump has improved over the years, and yet all these trainings did not take into consideration the importance of the athlete's motor path during phases. This was defined as the problem of this research, which proposed using unbalanced strength moments' training for the working muscles in long jump and gravity moments according to the performance of the two phases. These two phases are closely connected to instant push, acceleration, speed, and mass laws that directly affect biomechanical variables and achievement in youth long jump. Boxes of different heights and angles were used for jumping and added weights on the player to develop the strength of the arms, torso and legs. The aim is to identify the effect of some biomechanical variables of take-off and landing. The experimental method with a training program of three training sessions per week repeated for ten times were used and videotaped the long jump events. After 3 months the post-tests were conducted. The result concluded that these exercises affect the development of speed during the last stride as well as the angle and speed of take-off. Also, the training program develop the angles of attack during take-off and change the momentum and landing biomechanics that are considered important elements in archiving the best distance in long jump. Biomechanics variables for raising the long jump to the pilot group has significant development occurred after tests and impact strength training and control the movements of body parts. The training unbalance force plays an important role in controlling the change of moment of inertia and the angular acceleration. And " most important " Note in the system of levers in human structure is the very high proportion of muscular effort firm resolve that produces against certain resistance. Changing arm lever continuous hinge angle change affects produce such an effect which requires appropriate resistance force change for change in arm strength output owing to changed angle of the joint. This helped development of the efficiency of these muscles through exposure to muscular training effort of all body parts and knives performance and mobility at the same time giving the body's natural qualities as a projectile during the movement (Hang). Also, the strength training unbalance in accordance with torques which resembles as much as possible with performance, transactions carried out with the utmost precision the experimental group with the same motor level in terms of direction and extent of movement of the joint, and movement speed released.
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来源期刊
CiteScore
2.20
自引率
0.00%
发文量
4
审稿时长
6 weeks
期刊介绍: JHSE contributes to the continuing professional development of sport and exercise sciences, including a high-level research in biomechanics, exercise physiology, sports history, nutrition, and a wide range of social and ethical issues in physical activity, and other aspects of sports medicine related quality of life and biophysical investigation of sports performance.
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