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能量吸收作为训练有素女性腿部阻抗的预测指标。

Energy absorption as a predictor of leg impedance in highly trained females.

作者信息

Kulas Anthony S, Schmitz Randy J, Schultz Sandra J, Watson Mary Allen, Perrin David H

机构信息

Athletic Training Education Program, East Carolina University, Greenville, NC 27858, USA.

出版信息

J Appl Biomech. 2006 Aug;22(3):177-85. doi: 10.1123/jab.22.3.177.

Abstract

Although leg spring stiffness represents active muscular recruitment of the lower extremity during dynamic tasks such as hopping and running, the joint-specific characteristics comprising the damping portion of this measure, leg impedance, are uncertain. The purpose of this investigation was to assess the relationship between leg impedance and energy absorption at the ankle, knee, and hip during early (impact) and late (stabilization) phases of landing. Twenty highly trained female dancers (age = 20.3 +/- 1.4 years, height = 163.7 +/- 6.0 cm, mass = 62.1 +/- 8.1 kg) were instrumented for biomechanical analysis. Subjects performed three sets of double-leg landings from under preferred, stiff, and soft landing conditions. A stepwise linear regression analysis revealed that ankle and knee energy absorption at impact, and knee and hip energy absorption during the stabilization phases of landing explained 75.5% of the variance in leg impedance. The primary predictor of leg impedance was knee energy absorption during the stabilization phase, independently accounting for 55% of the variance. Future validation studies applying this regression model to other groups of individuals are warranted.

摘要

尽管腿部弹簧刚度代表了在诸如单脚跳和跑步等动态任务中下肢的主动肌肉募集,但构成该测量值阻尼部分的关节特定特征,即腿部阻抗,尚不确定。本研究的目的是评估着陆早期(冲击)和晚期(稳定)阶段,脚踝、膝盖和髋关节处的腿部阻抗与能量吸收之间的关系。对20名训练有素的女性舞者(年龄 = 20.3 ± 1.4岁,身高 = 163.7 ± 6.0厘米,体重 = 62.1 ± 8.1千克)进行了生物力学分析。受试者在偏好、僵硬和柔软着陆条件下进行了三组双腿着陆。逐步线性回归分析表明,冲击时脚踝和膝盖的能量吸收,以及着陆稳定阶段膝盖和髋关节的能量吸收,解释了腿部阻抗75.5%的方差。腿部阻抗的主要预测因素是稳定阶段膝盖的能量吸收,其独立解释了55%的方差。有必要开展未来的验证研究,将此回归模型应用于其他个体群体。

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