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在踝关节固定的卧位周期测力计测试中,健全受试者腿部一般肌肉力矩和功率模式。

Leg general muscle moment and power patterns in able-bodied subjects during recumbent cycle ergometry with ankle immobilization.

作者信息

Szecsi J, Straube A, Fornusek C

机构信息

Center for Sensorimotor Research, Department of Neurology, Ludwig-Maximilians University, Munich, Germany.

Center for Sensorimotor Research, Department of Neurology, Ludwig-Maximilians University, Munich, Germany.

出版信息

Med Eng Phys. 2014 Nov;36(11):1421-7. doi: 10.1016/j.medengphy.2014.05.010. Epub 2014 Jun 10.

Abstract

Rehabilitation of persons with pareses commonly uses recumbent pedalling and a rigid pedal boot that fixes the ankle joint from moving. This study was performed to provide general muscle moments (GMM) and joint power data from able-bodied subjects performing recumbent cycling at two workloads. Twenty-six able-bodied subjects pedalled a stationary recumbent tricycle at 60 rpm during passive cycling and at two workloads (low 15 W and high 40 W per leg) while leg kinematics and pedal forces were recorded. GMM and power were calculated using inverse dynamic equations. During the high workload, the hip and knee muscles produced extensor/flexor moments throughout the extensions/flexions phases of the joints. For low workload, a prolonged (crank angle 0-258°) hip extension moment and a shortened range (350-150°) of knee extension moment were observed compared to the corresponding extension phases of each joint. The knee and hip joints generated approximately equal power. At the high workload the hip and knee extensors generated increased power in the propulsion phase. For the first time, this study provides GMM and power patterns for able-bodied subjects performing recumbent cycling with an immobilized ankle. The patterns showed greater similarities to upright cycling with a free ankle, than previously supposed.

摘要

偏瘫患者的康复通常采用卧式蹬踏以及固定踝关节使其不能活动的刚性踏板靴。本研究旨在提供在两种工作负荷下进行卧式骑行的健全受试者的总体肌肉力矩(GMM)和关节功率数据。26名健全受试者在被动骑行期间以及在两种工作负荷(每条腿低负荷15瓦和高负荷40瓦)下蹬踏一辆固定的卧式三轮车,同时记录腿部运动学和踏板力。使用逆动力学方程计算GMM和功率。在高工作负荷期间,髋关节和膝关节肌肉在关节伸展/屈曲阶段全程产生伸肌/屈肌力矩。与每个关节相应的伸展阶段相比,在低工作负荷时,观察到髋关节伸展力矩持续时间延长(曲柄角度0 - 258°),膝关节伸展力矩范围缩短(350 - 150°)。膝关节和髋关节产生的功率大致相等。在高工作负荷时,髋关节和膝关节伸肌在推进阶段产生的功率增加。本研究首次提供了踝关节固定的健全受试者进行卧式骑行时的GMM和功率模式。这些模式与自由踝关节的直立骑行相比,显示出比以前认为的更大的相似性。

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