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首页> 外文期刊>Journal of Strength and Conditioning Research >A BIOMECHANICAL ANALYSIS OF THE SQUAT BETWEEN COMPETITIVE COLLEGIATE, COMPETITIVE HIGH SCHOOL, AND NOVICE POWERLIFTERS
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A BIOMECHANICAL ANALYSIS OF THE SQUAT BETWEEN COMPETITIVE COLLEGIATE, COMPETITIVE HIGH SCHOOL, AND NOVICE POWERLIFTERS

机译:竞争性大学,竞争性高中和新手举重运动员下蹲的生物力学分析

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摘要

The purpose of this study was to measure and analyze kinematic differences between competitive collegiate (CLG, n = 9) powerlifters, competitive high school (HS, n = 9) powerlifters, and novice (NV, n = 11) powerlifters during a maximal squat to determine the effect of skill level on performance. All powerlifters performed 3 squats, with the final squat being their 1 repetition maximum. Kinematic data (descent, ascent, total lift times, knee angle magnitude, knee angular velocity, and knee angular acceleration) was measured using 2-dimensional motion analysis equipment. Differences in mean peak kinematic values between the 3 groups were analyzed using a 1-way multivariate analysis of variance, p ≤ 0.05. Differences were found between the NV and HS in the time to ascent, the total lift time, the normalized time to peak (NTTP) in knee angular velocity from the "sticking point" to the "lockout," and the NTTP in knee angular acceleration during the ascent. A difference was found between the CLG and HS in the peak knee angular velocity between the bottom of the lift and the sticking point. Differences were also found in the rate of acceleration upward after coming out of "the hole" between the CLG and NV and CLG and HS. A difference was found in the rate of peak deceleration upward to the sticking point between the CLG and NV. To avoid injury and to achieve optimum results in powerlifting, lifting technique must be optimized. The HS and NV accumulated several significant differences in NTTP during the ascending phase. However, the major finding between the 3 groups was in the rate of acceleration upward after coming out of the hole. Coaches should focus their training programs on increasing strength in unskilled powerlifters for the purpose of increasing acceleration from the bottom of the lift. [PUBLICATION ABSTRACT]
机译:这项研究的目的是测量和分析最大蹲下期间竞技大学(CLG,n = 9)举重运动员,竞技高中(HS,n = 9)举重运动员和新手(NV,n = 11)举重运动员之间的运动学差异确定技能水平对绩效的影响。所有举重运动员都进行了3次深蹲,最后一次深蹲是他们的1次最大重复。运动数据(下降,上升,总提升时间,膝盖角度幅度,膝盖角速度和膝盖角加速度)是使用二维运动分析设备测量的。使用单因素方差多元分析(p≤0.05)分析了三组之间的平均峰值运动学差异。发现NV和HS的上升时间,总提升时间,从“粘滞点”到“锁定”的膝盖角速度的标准化峰值时间(NTTP)和膝盖角加速度的NTTP之间存在差异在上升期间。在CLG和HS之间发现了在举升器底部和粘着点之间的峰值膝关节角速度上的差异。在从CLG和NV以及CLG和HS之间的“洞”出来后,向上的加速度也有所不同。发现在CLG和NV之间的峰值减速速率向上直至达到粘滞点。为了避免受伤并在举重方面达到最佳效果,必须优化举升技术。在上升阶段,HS和NV在NTTP中积累了几个显着差异。但是,三组之间的主要发现是从孔中出来后向上的加速度。教练应将训练计划的重点放在增加非熟练动力举重运动员的力量上,以增加从升降机底部的加速度。 [出版物摘要]

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    《Journal of Strength and Conditioning Research》 |2009年第5期|p.1611-1617|共7页
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    WENDY M. MILETELLO,* JASON R. BEAM, AND ZACHARY C. COOPER1 Department of Kinesiology, Louisiana Tech University, Rustan, LouisianaAddress correspondence to Jason Beam, jbeam@unm.edu.23(5)/1611-1617Journal of Strength and Conditioning Research© 2009 National Strength and Conditioning Association;

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