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儿童和成人单腿原地跳跃时下肢关节功能。

Lower Limb Joint Functions during Single-Leg Hopping in-Place in Children and Adults.

机构信息

Department of Health and Sport Science, University of Dayton, Dayton, OH, USA.

Department of Kinesiology and Health, Georgia State University, Atlanta, GA, USA.

出版信息

J Mot Behav. 2022;54(5):577-587. doi: 10.1080/00222895.2021.2025333. Epub 2022 Jan 11.

Abstract

Children often display different whole-body dynamics compared to adults during locomotion such as walking and hopping. However, it is unknown whether these differences result in diverging functional usage of the lower limb joints. This study aimed to compare the mechanical functions of the ankle, knee, and hip joints between children and adults during single-leg hopping in-place at different frequencies. Children aged 5-11 years and adults aged 18-35 years performed hopping at their preferred frequency and slower and faster frequencies. Function of the joint was modeled as a combination of a strut, spring, motor, and damper. At the preferred frequency, children hopped equally with strut and spring functions at the ankle and knee joints while adults primarily used the spring function. When increasing frequency, both children and adults decreased the spring index and increased the strut index at the ankle and knee joints. Across all conditions, both children and adults used the strut function primarily at the hip joint. Results suggest that preadolescent children are still developing the adult-like spring function of their ankle and knee joints during hopping in-place. Quantification of spring function during hopping in-place may present an innovative approach to understand the maturation of the stretch-shortening cycle in children.

摘要

儿童在行走和跳跃等运动中表现出与成人不同的整体动力学特征。然而,目前尚不清楚这些差异是否导致下肢关节的功能使用方式不同。本研究旨在比较儿童和成人在以不同频率进行单腿原地跳跃时踝关节、膝关节和髋关节的机械功能。5-11 岁的儿童和 18-35 岁的成年人以自身偏好的频率以及较慢和较快的频率进行跳跃。关节的功能被建模为支柱、弹簧、电机和阻尼器的组合。在偏好的频率下,儿童在踝关节和膝关节处的跳跃与支柱和弹簧功能相等,而成年人主要使用弹簧功能。当频率增加时,儿童和成人都降低了踝关节和膝关节的弹簧指数,增加了支柱指数。在所有条件下,儿童和成人主要在髋关节处使用支柱功能。结果表明,在原地跳跃中,青春期前儿童的踝关节和膝关节仍在发育成人样的弹簧功能。原地跳跃中弹簧功能的定量分析可能为了解儿童伸展-缩短周期的成熟提供一种创新方法。

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