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Between-Leg Mechanical Differences as Measured by the Bulgarian Split-Squat: Exploring Asymmetries and Relationships with Sprint Acceleration

机译:保加利亚人分开蹲法测量的腿间机械差异:探索不对称性和与短跑加速的关系

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摘要

Between-leg strength differences can negatively influence sprint acceleration. The challenge is to find a method to measure this within a unilateral exercise. This study analyzed a five repetition-maximum (5RM) Bulgarian split-squat (BSS) to identify between-leg differences for the dominant and non-dominant legs in peak and mean power, force, and velocity as measured by a linear position transducer. Between-leg differences in these variables were correlated with 20-m (0–5, 0–10, 0–20 m intervals) sprint velocity. Eight men were assessed in the 5RM BSS and 20-m sprint. T-tests calculated between-leg differences in power, force, and velocity. Spearman’s correlations calculated relationships between the between-leg differences in the mechanical variables with velocity over each interval. When comparing the dominant and non-dominant legs, there were significant (p = 0.002–0.056) differences in 11 of 12 variables. However, percentage differences were low (~0.3–12%). There was one large, non-significant correlation (best repetition mean force between-leg difference and 0–5 m velocity; ρ = −0.810) out of 36 relationships. The BSS can provide a profile of between-leg differences in power, force, and velocity. There were limited relationships between the BSS between-leg differences and 20-m sprint velocities. Smaller between-leg differences in BSS power, force, and velocity could ensure minimal impact on acceleration.
机译:腿间力量差异会对冲刺加速产生负面影响。面临的挑战是找到一种在单方面演习中进行测量的方法。这项研究分析了五个重复最大(5RM)的保加利亚劈蹲(BSS),以识别由线性位置传感器测量的峰值和平均功率,力和速度的主要和非主要腿的腿间差异。这些变量的腿间差异与20-m(0-5、0-10、0-20m的间隔)冲刺速度相关。在5RM BSS和20米短跑中评估了八名男子。 T检验计算腿部之间的力量,力量和速度差异。 Spearman的相关性计算出每个间隔内机械变量的腿间差异与速度之间的关系。比较优势腿和非优势腿时,在12个变量中的11个之间存在显着性差异(p = 0.002-0.056)。但是,百分比差异较低(〜0.3–12%)。在36种关系中,存在一种大的,不显着的相关性(腿间差异与0–5 m速度之间的最佳重复平均力;ρ= −0.810)。 BSS可以提供​​力量,力量和速度的腿间差异的概况。 BSS腿间差异与20米冲刺速度之间的关系有限。 BSS的力量,力量和速度在两腿之间的差异较小,可以确保对加速度的影响最小。

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