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An Approach to Identifying the Effect of Technique Asymmetries on Body Alignment in Swimming Exemplified by a Case Study of a Breaststroke Swimmer

机译:一项以蛙泳运动员为例的识别游泳中技术不对称影响的方法

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摘要

Despite the importance of maintaining good alignment to minimize resistive drag in swimming there is a paucity of literature relating to the effect of technique asymmetries on rotations of the body about a vertical axis (yaw). The purpose of this paper was to present an approach to analyzing the effect of technique asymmetries on rotations in swimming, exemplifying the process with a case study of a breaststroke swimmer. The kinematics and angular kinetics of an elite female international breaststroke swimmer performing a ‘fatigue set’ of four 100m swims were derived from digitized three-dimensional video data using a 13 segment body model. Personalised anthropometric data required to quantify accurately segment and whole body centres of mass and segmental angular momentum were obtained by the elliptical zone method. Five episodes of torques producing yaw occurred in the stroke cycle sampled for each 100m swim of this swimmer. These torques were linked to bilateral differences in upper limb kinematics during 1) out-sweep; 2) in-sweep; 3) upper limb recovery; and lower limb kinematics during 4) Lower limb recovery and 5) the kick. It has been shown that by quantifying whole body torques, in conjunction with the kinematic movement patterns, the effect of technique asymmetries on body alignment can be assessed. Assessment of individual swimmers in this manner provides a solid foundation for planning interventions in strength, flexibility, and technique to improve alignment and performance.Key points class="unordered" style="list-style-type:disc">A unique (not been attempted previously) study of yaw in breaststroke swimming that yields new knowledge of how technique and strength asymmetries affects body alignment.Establishes an approach to investigation of yaw in swimming using 3D videography and inverse dynamics.Exemplifies the approach with a case study. The case study illustrated the potential of the approach to enable detailed assessment of yaw and to explain how the yaw is produced in terms of the asymmetries in speed and magnitude of the swimming actions.This procedure should be used to identify and quantify asymmetries that might impair performance.
机译:尽管保持良好对准以最小化游泳中的阻力的重要性很重要,但是关于技术不对称对身体绕垂直轴(偏航)旋转的影响的文献很少。本文的目的是提出一种方法来分析技术不对称性对游泳旋转的影响,并以蛙泳游泳者为例来说明这一过程。精英女性国际蛙泳运动员的运动学和角动力学是使用13段人体模型从数字化的三维视频数据中得出的,该运动员进行了4次100m的“疲劳训练”。通过椭圆区域法获得了精确量化节段和全身质量中心以及节段角动量所需的个性化人体测量数据。对于每位游泳者进行100m游泳时,在冲程周期中发生了五次产生偏航的扭矩。这些扭矩与1)外旋运动期间上肢运动学的双侧差异有关。 2)扫描3)上肢康复;和4)下肢恢复和5)踢时的下肢运动学。已经表明,通过结合运动学运动模式量化全身扭矩,可以评估技术不对称对身体对准的影响。以这种方式对单个游泳者的评估为计划针对力量,柔韧性和技巧的干预措施提供了坚实的基础,以提高对位和性能。要点 class =“ unordered” style =“ list-style-type:disc”> <! -list-behavior = unordered prefix-word = mark-type = disc max-label-size = 0-> 对蛙泳游泳中偏航的独特研究(之前未尝试过),该研究产生了新的技巧知识 建立了一种使用3D摄影和逆动力学研究游泳偏航的方法。 以案例研究为例。案例研究说明了该方法的潜力,该方法可以实现偏航的详细评估,并可以根据游泳动作的速度和幅度的不对称性来解释偏航的产生方式。 此过程应用于识别并量化可能会影响性能的不对称性。

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