Collins Steven H, Adamczyk Peter G, Kuo Arthur D
Department of Mechanical Engineering, University of Michigan, Ann Arbor, MI 48109-2125, USA.
Proc Biol Sci. 2009 Oct 22;276(1673):3679-88. doi: 10.1098/rspb.2009.0664. Epub 2009 Jul 29.
Humans tend to swing their arms when they walk, a curious behaviour since the arms play no obvious role in bipedal gait. It might be costly to use muscles to swing the arms, and it is unclear whether potential benefits elsewhere in the body would justify such costs. To examine these costs and benefits, we developed a passive dynamic walking model with free-swinging arms. Even with no torques driving the arms or legs, the model produced walking gaits with arm swinging similar to humans. Passive gaits with arm phasing opposite to normal were also found, but these induced a much greater reaction moment from the ground, which could require muscular effort in humans. We therefore hypothesized that the reduction of this moment may explain the physiological benefit of arm swinging. Experimental measurements of humans (n = 10) showed that normal arm swinging required minimal shoulder torque, while volitionally holding the arms still required 12 per cent more metabolic energy. Among measures of gait mechanics, vertical ground reaction moment was most affected by arm swinging and increased by 63 per cent without it. Walking with opposite-to-normal arm phasing required minimal shoulder effort but magnified the ground reaction moment, causing metabolic rate to increase by 26 per cent. Passive dynamics appear to make arm swinging easy, while indirect benefits from reduced vertical moments make it worthwhile overall.
人类行走时往往会摆动双臂,这是一种奇特的行为,因为双臂在双足步态中并没有明显作用。摆动双臂可能会消耗肌肉能量,而且目前尚不清楚身体其他部位的潜在益处是否能抵消这些消耗。为了研究这些成本与收益,我们开发了一个带有自由摆动双臂的被动动态行走模型。即使没有扭矩驱动双臂或双腿,该模型也能产生与人类相似的带有手臂摆动的行走步态。我们还发现了手臂相位与正常情况相反的被动步态,但这些步态会引起地面更大的反作用力矩,这在人类行走时可能需要肌肉用力。因此,我们推测减少这个力矩可能解释了手臂摆动的生理益处。对10名人类受试者的实验测量表明,正常的手臂摆动所需的肩部扭矩最小,而有意保持手臂不动则需要多消耗12%的代谢能量。在步态力学的各项测量指标中,垂直地面反作用力矩受手臂摆动的影响最大,没有手臂摆动时会增加63%。与正常手臂相位相反的行走方式所需的肩部用力最小,但会增大地面反作用力矩,导致代谢率提高26%。被动动力学似乎使手臂摆动变得轻松,而减少垂直力矩带来的间接益处总体上使其变得值得。