Capmal S, Vandewalle H
Département Recherche INSEP, Laboratoire de Biomécanique et Physiologie, Paris, France.
Eur J Appl Physiol Occup Physiol. 1997;76(4):375-9. doi: 10.1007/s004210050264.
The torque-velocity relationship in cycling has been studied during all-out sprints (n = 6 subjects) with and without toe clips on an electronic Lode ergometer with strain gauges, to estimate the importance of the expected decrease in torque, velocity and power output. As previously found with different cycling protocols, the torque-velocity relationship was linear for all-out sprints with toe clips. A similar relationship was observed when cycling without toe clips but the torque-velocity relationship was inflected downwards at low or high velocities in several subjects who were not regular cyclists. The pulling action during the rise of the pedal at low velocities cannot explain why the torque-velocity relationship is not hyperbolic for cycling exercises with toe clips because similar relationships were observed without toe clips. The maximal power output was significantly higher during cycling with toe clips (782 W vs 668 W, P < 0.05), probably because of the pulling action at low and medium velocities as indicated by the higher value of the extrapolated maximal torque T0 (138 N x m vs 122 N x m, P < 0.05). In contrast, the maximal extrapolated velocity, V0 and peak velocity were not significantly improved by the use of toe clips. The comparison of the angle-torque patterns at low and high velocities suggested that the kinetic energy of the legs can be transformed into power output when cycling without toe clips as well as it can when cycling with toe clips.
在配备应变片的电子洛德测力计上,针对6名受试者在全力冲刺时使用和不使用脚套的情况,研究了骑行中的扭矩-速度关系,以评估扭矩、速度和功率输出预期下降的重要性。正如之前在不同骑行方案中所发现的那样,对于使用脚套的全力冲刺,扭矩-速度关系呈线性。在不使用脚套骑行时也观察到了类似的关系,但在一些非经常骑行的受试者中,扭矩-速度关系在低速或高速时向下弯曲。低速时踏板上升过程中的拉动动作无法解释为何使用脚套的骑行运动中扭矩-速度关系不是双曲线型,因为在不使用脚套时也观察到了类似的关系。使用脚套骑行时的最大功率输出显著更高(782瓦对668瓦,P<0.05),这可能是由于中低速时的拉动动作,外推最大扭矩T0的值更高表明了这一点(138牛·米对122牛·米,P<0.05)。相比之下,使用脚套并未显著提高最大外推速度V0和峰值速度。对低速和高速时角度-扭矩模式的比较表明,不使用脚套骑行时腿部的动能能够像使用脚套骑行时一样转化为功率输出。