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首页> 外文期刊>American Journal of Physical Anthropology >Center Of Mass Mechanics Of Chimpanzee Bipedal Walking
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Center Of Mass Mechanics Of Chimpanzee Bipedal Walking

机译:黑猩猩双足行走的质量力学中心

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Center of mass (CoM) oscillations were documented for 81 bipedal walking strides of three chimpanzees. Full-stride ground reaction forces were recorded as well as kinematic data to synchronize force to gait events and to determine speed. Despite being a bent-hip, bent-knee (BHBK) gait, chimpanzee walking uses pendulum-like motion with vertical oscillations of the CoM that are similar in pattern and relative magnitude to those of humans. Maximum height is achieved during single support and minimum height during double support. The mediolateral oscillations of the CoM are more pronounced relative to stature than in human walking when compared at the same Froude speed. Despite the pendular nature of chimpanzee bipedalism, energy recoveries from exchanges of kinetic and potential energies are low on average and highly variable. This variability is probably related to the poor phasic coordination of energy fluctuations in these facultatively bipedal animals. The work on the CoM per unit mass and distance (mechanical cost of transport) is higher than that in humans, but lower than that in bipedally walking monkeys and gibbons. The pronounced side sway is not passive, but constitutes 10% of the total work of lifting and accelerating the CoM. CoM oscillations of bipedally walking chimpanzees are distinctly different from those of BHBK gait of humans with a flat trajectory, but this is often described as chimpanzee-like walking. Human BHBK gait is a poor model for chimpanzee bipedal walking and offers limited insights for reconstructing early hominin gait evolution. Am J Phys Anthropol 156:422-433, 2015. (c) 2014 Wiley Periodicals, Inc.
机译:记录了三只黑猩猩的81个双足行走步幅的质心(CoM)振荡。记录了全步幅地面反作用力以及运动学数据,以使力与步态事件同步并确定速度。尽管是弯曲臀部,弯曲膝盖(BHBK)的步态,但黑猩猩的行走仍采用摆式运动,且CoM的垂直振动的模式和相对大小与人类相似。单支撑时达到最大高度,双支撑时达到最小高度。当以相同的Froude速度进行比较时,CoM的中外侧振动相对于身高要比人的行走更为明显。尽管黑猩猩两足动物具有摆动性,但动能和势能交换的能量回收平均较低,且变化很大。这种变异性可能与这些兼性双足动物的能量波动相位协调性差有关。每单位质量和距离的CoM的工作(机械的运输成本)高于人类,但低于双足行走的猴子和长臂猿。明显的侧摆不是被动的,而是构成提升和加速CoM的全部工作的10%。双足行走的黑猩猩的CoM振荡与轨迹平坦的人类BHBK步态的CoM振荡明显不同,但通常被称为类黑猩猩的行走。人类BHBK步态对于黑猩猩双足行走来说是一个糟糕的模型,并且对于重建早期人的步态进化提供了有限的见识。 Am J Phys Anthropol 156:422-433,2015年。(c)2014 Wiley Periodicals,Inc.

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