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Old men running: mechanical work and elastic bounce

机译:老人跑步:机械工作和弹性反弹

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摘要

It is known that muscular force is reduced in old age. We investigate what are the effects of this phenomenon on the mechanics of running. We hypothesized that the deficit in force would result in a lower push, causing reduced amplitude of the vertical oscillation, with smaller elastic energy storage and increased step frequency. To test this hypothesis, we measured the mechanical energy of the centre of mass of the body during running in old and young subjects. The amplitude of the oscillation is indeed reduced in the old subjects, resulting in an approximately 20% smaller elastic recovery and a greater step frequency (3.7 versus 2.8 Hz, p=1.9×10−5, at 15–17 km h−1). Interestingly, the greater step frequency is due to a lower aerial time, and not to a greater natural frequency of the system, which is similar in old and young subjects (3.6 versus 3.4 Hz, p=0.2). Moreover, we find that in the old subjects, the step frequency is always similar to the natural frequency, even at the highest speeds. This is at variance with young subjects who adopt a step frequency lower than the natural frequency at high speeds, to contain the aerobic energy expenditure. Finally, the external work to maintain the motion of the centre of mass is reduced in the old subjects (0.9 versus 1.2 J kg−1 m−1, p=5.1×10−6) due to the lower work done against gravity, but the higher step frequency involves a greater internal work to reset the limbs at each step. The net result is that the total work increases with speed more steeply in the old subjects than in young subjects.
机译:众所周知,老年时肌肉力量会降低。我们研究了这种现象对跑步机理的影响。我们假设力的不足会导致推力降低,从而导致垂直振动的幅度减小,弹性能量存储量减小,步频增加。为了验证这一假设,我们测量了老年和青年受试者跑步过程中身体质心的机械能。在老受试者中,振荡的幅度确实降低了,从而导致弹性恢复降低了约20%,步频更高(3.7 vs 2.8 Hz,p = 1.9×10 -5 ,在15岁时–17 km h -1 )。有趣的是,较大的步进频率是由于飞行时间较短,而不是由于系统的固有频率较高,这在老年和青年受试者中都类似(3.6 vs 3.4 Hz,p = 0.2)。此外,我们发现在较早的对象中,即使在最高速度下,步进频率也总是与自然频率相似。这与年轻的受试者不同,他们在高速下采用低于自然频率的步进频率来控制有氧能量消耗。最后,在老年受试者中,维持质心运动的外部工作减少了(0.9比1.2 J kg -1 m -1 ,p = 5.1× 10 −6 ),这是因为在重力作用下所做的功较低,但较高的步频需要较大的内部功来使每一步的肢体复位。最终结果是,老年受试者的总工作量比年轻受试者的工作量增加得更快。

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