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一种用于评估动态肌肉活动的测力计。

A dynamometer for evaluation of dynamic muscle work.

作者信息

Bosco C, Belli A, Astrua M, Tihanyi J, Pozzo R, Kellis S, Tsarpela O, Foti C, Manno R, Tranquilli C

机构信息

Department of Physical Medicine and Rehabilitation, Faculty of Medicine and Surgery, University of Roma Tor Vergata, Rome, Italy.

出版信息

Eur J Appl Physiol Occup Physiol. 1995;70(5):379-86. doi: 10.1007/BF00618487.

DOI:10.1007/BF00618487
PMID:7671871
Abstract

The validation of a new dynamometer for evaluation of dynamic muscle work is presented. The device was based on a precise measurement of load displacements of any machine using gravitational loads as external resistance. It allowed, through a sensor consisting of an infrared photo interrupter, the calculation of velocity, force and power during concentric, eccentric and stretch-shortening cycle activity. To validate the dynamometer 33 male and female track and field athletes (12 throwers and 21 jumpers) participated in the study. The throwers (4 women and 8 men) were asked to perform half-squat exercises on a slide machine with a load of 100% of the subject's body mass. The day-to-day reproducibility of half-squat exercises gave a correlation coefficient of r = 0.88, 0.97 and 0.95 for average push-off force (AF), average push-off velocity (AV), and average push-off power (AP) respectively. Comparison of half-squat measurements was performed against jumping and running test evaluation by the jumpers (7 women and 14 men). The interrelationships among the different variables studied demonstrated a strong correlation between AF, AV and AP and sprinting and jumping parameters (r = 0.53-0.97; P < 0.05-0.001). Using values of AF, AV and AP developed in half-squat exercises executed with different loads, ranging from 35% to 210% of the subject's body mass, it was also possible to establish the force-velocity and power-velocity relationships for both male and female jumpers. In any individual case, the maximal error due to the measurement system was calculated to be less than 0.3%, 0.9% and 1.2% for AF, AV, and AP respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

本文介绍了一种用于评估动态肌肉做功的新型测力计的验证情况。该装置基于对任何使用重力负荷作为外部阻力的机器的负荷位移进行精确测量。通过一个由红外光电中断器组成的传感器,它能够计算向心、离心和拉长缩短周期活动期间的速度、力量和功率。为验证该测力计,33名男女田径运动员(12名投掷运动员和21名跳跃运动员)参与了研究。要求投掷运动员(4名女性和8名男性)在滑动机器上进行半蹲练习,负荷为受试者体重的100%。半蹲练习的日常重复性表明,平均蹬地力量(AF)、平均蹬地速度(AV)和平均蹬地功率(AP)的相关系数分别为r = 0.88、0.97和0.95。跳跃运动员(7名女性和14名男性)将半蹲测量结果与跳跃和跑步测试评估进行了比较。所研究的不同变量之间的相互关系表明,AF、AV和AP与短跑和跳跃参数之间存在很强的相关性(r = 0.53 - 0.97;P < 0.05 - 0.001)。利用在不同负荷(为受试者体重的35%至210%)下进行半蹲练习时得出的AF、AV和AP值,还能够建立男女跳跃运动员的力 - 速度和功率 - 速度关系。在任何个别情况下,测量系统导致的最大误差经计算对于AF、AV和AP分别小于0.3%、0.9%和1.2%。(摘要截取自250字)

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