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在不同工作负荷和速度下进行测力计骑行时的肌肉机械功率输出及功。

Mechanical muscular power output and work during ergometer cycling at different work loads and speeds.

作者信息

Ericson M O

机构信息

Department of Anatomy, Karolinska Institute, Stockholm, Sweden.

出版信息

Eur J Appl Physiol Occup Physiol. 1988;57(4):382-7. doi: 10.1007/BF00417980.

Abstract

The aim of the study was to calculate the magnitude of the instantaneous muscular power output at the hip, knee and ankle joints during ergometer cycling at different work loads and speeds. Six healthy subjects pedalled a weight-braked cycle ergometer at 0, 120 and 240 W at a constant speed of 60 rpm. The subjects also pedalled at 40, 60, 80 and 100 rpm against the same resistance, giving power outputs of 80, 120, 160 and 200 W respectively. The subjects were filmed with a cine-film camera, and pedal reaction forces were recorded from a force transducer mounted in the pedal. The muscular work for the hip, knee and ankle joint muscles was calculated using a model based upon dynamic mechanics and described elsewhere. The total work during one pedal revolution significantly increased with increased work load but did not increase with increased pedalling rate at the same braking force. The relative proportions of total positive work at the hip, knee and ankle joints were also calculated. Hip and ankle extension work proportionally decreased with increased work load. Pedalling rate did not change the relative proportion of total work at the different joints.

摘要

本研究的目的是计算在不同工作负荷和速度下,测力计骑行过程中髋、膝和踝关节的瞬时肌肉功率输出大小。六名健康受试者以60转/分钟的恒定速度,在0瓦、120瓦和240瓦的负荷下蹬踩带重量刹车的自行车测力计。受试者还在相同阻力下,分别以40、60、80和100转/分钟的速度蹬踩,功率输出分别为80瓦、120瓦、160瓦和200瓦。用电影摄影机拍摄受试者,并通过安装在踏板上的力传感器记录踏板反作用力。髋、膝和踝关节肌肉的肌肉功是使用基于动力学原理的模型计算得出的,该模型在其他地方已有描述。在一次踏板转动过程中,总功随着工作负荷的增加而显著增加,但在相同制动力下,并不随蹬踩速率的增加而增加。还计算了髋、膝和踝关节总正功的相对比例。随着工作负荷的增加,髋部和踝部伸展功成比例下降。蹬踩速率并未改变不同关节总功的相对比例。

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