举重运动员髌腱的机械特性--肌力测定法的作用。髌腱对机械负荷的适应性。

Acta of bioengineering and biomechanics Pub Date : 2024-06-03 Print Date: 2024-06-01 DOI:10.37190/abb-02396-2024-04
Sebastian Szajkowski, Jarosław Pasek, Michał Dwornik, Grzegorz Cieślar
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引用次数: 0

摘要

目的:肌腱通过改变自身的机械特性来适应施加在其上的负荷。本研究旨在探讨不同年龄段的人进行举重/力量训练等体育锻炼对髌腱机械性能的影响。方法:200 人参与研究。第 1 组(109 人)由业余力量运动训练者组成,第 2 组(91 人)由不参加体育活动者组成。研究人员分别在膝关节的不同位置(0、30、60、90、120°)对髌腱进行了检查。使用 MyotonPRO 肌能测量仪测量了以下机械参数:频率[赫兹]、硬度[牛/米]、递减[对数]、松弛时间[毫秒]和蠕变[De]。测量结果与体力活动、训练史、体重指数值和性别进行了比较。结果随着髌腱拉伸程度的增加,硬度和张力增加,而弹性降低。在接受训练的人群中,僵硬度和张力增加,弹性降低。此外,老年人和训练经验较长的人的僵硬度和张力似乎更高。结论与力量训练相关的机械负荷会导致髌腱发生适应性变化,表现为更高的僵硬度和张力以及更低的弹性。MyotonPRO 设备可用于定量评估髌腱的机械性能。
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Mechanical properties of the patellar tendon in weightlifting athletes - the utility of myotonometry. Adaptations of patellar tendon to mechanical loading.

Purpose: Tendons adapt to loads applied to them, by changing their own mechanical properties. The purpose of the study was to examine the influence of practicing sport in the form of weightlifting/strength training by individuals of various age groups upon the mechanical properties of the patellar tendon. Methods: 200 people participated in the study. Group 1 (n = 109) comprised individuals training strength sports as amateurs, group 2 (n = 91) consisted of people who were not physically active. The patellar tendon was examined in various positions of the knee joint: 0, 30, 60, 90, 120° respectively. The following mechanical parameters were measured with the use of a device for myoto-nometric measurements, MyotonPRO: frequency [Hz], stiffness [N/m], decrement [log], relaxation time [ms] and creep [De]. The results were compared as regards physical activity, training history, BMI value, and gender. Results: Stiffness and tone increased while elasticity decreased with patellar tendon stretching degree. In the group of individuals in training, greater stiffness and tone and lower elasticity were noted. Moreover, stiffness and tone appeared to be higher in elderly people and individuals with longer training experience. Conclusions: Mechanical loads connected with strength training result in development of adaptive changes in the patellar tendon, in the form of higher stiffness and tone, as well as lower elasticity. The MyotonPRO device is useful for quantitative assessment of the mechanical properties of patellar tendon.

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