Pöyhönen T, Keskinen K L, Hautala A, Mälkiä E
Department of Health Sciences, University of Jyväskylä, PL 35, 40351, Jyväskylä, Finland.
Clin Biomech (Bristol). 2000 May;15(4):256-60. doi: 10.1016/s0268-0033(99)00070-4.
The purpose of this laboratory experiment was to measure hydrodynamic drag forces in barefoot/hydro-boot conditions and accordingly, to determine the coefficients of drag on human leg/foot model during simulated knee extension-flexion exercise.
The prosthesis of the human lower leg was set in a water tank and connected into an isokinetic force dynamometer to measure resistive forces during knee motion.
Quantifying resistance for aquatic exercises has been a challenge in hydrotherapy. The use of models of foot/leg provides a practical method to calculate coefficients of drag and to estimate resistance for rehabilitation purposes in musculoskeletal and amputee patients.
The dynamometer produced constant angular velocities of 250 degrees /s, 270 degrees /s and 300 degrees /s to the prosthesis. The baseline for measurements was performed in barefoot condition. A hydro-boot was used to study effects of increased frontal area (30%) of the leg on drag forces and coefficients.
The maximal drag force values were 61 N (300 degrees /s) in barefoot and 270 N (270 degrees /s) in hydro-boot condition. Related drag coefficient values during the range of motion were from 0.3 to 0.1 and from 1 to 0.8, respectively.
Drag force and related drag coefficient were highest during the early part of extension (150-140 degrees flexion) as the model was opposing the lift forces with the influence of water resistance. The effect of velocity was remarkable on drag forces but minimal on drag coefficient values. RelevanceThe drag forces and coefficients of this experiment can be clinically utilised to calculate hydrodynamic forces to develop progressive knee exercise programs as well as to design of prosthesis for amputee patients.
本实验室实验的目的是测量赤脚/水靴条件下的流体动力阻力,并据此确定模拟膝关节屈伸运动期间人体腿部/足部模型的阻力系数。
将人体小腿假体置于水箱中,并连接到等速测力计上,以测量膝关节运动期间的阻力。
量化水上运动的阻力一直是水疗中的一项挑战。使用足部/腿部模型提供了一种实用方法,可用于计算阻力系数,并估算肌肉骨骼和截肢患者康复目的的阻力。
测力计以250度/秒、270度/秒和300度/秒的恒定角速度作用于假体。测量的基线在赤脚条件下进行。使用水靴研究腿部正面面积增加30%对阻力和系数的影响。
赤脚时最大阻力值为61牛(300度/秒),水靴条件下为270牛(270度/秒)。运动范围内相关的阻力系数值分别为0.3至0.1和1至0.8。
在伸展早期(屈曲150 - 140度),由于模型在水阻力的影响下抵抗升力,阻力和相关阻力系数最高。速度对阻力的影响显著,但对阻力系数值的影响最小。相关性本实验的阻力和系数可在临床上用于计算流体动力,以制定渐进性膝关节运动计划以及为截肢患者设计假体。