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Mechanical analysis of infant carrying in hominoids

机译:婴幼儿类人猿的力学分析

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In all higher nonhuman primates, species survival depends upon safe carrying of infants clinging to body hair of adults. In this work, measurements of mechanical properties of ape hair (gibbon, orangutan, and gorilla) are presented, focusing on constraints for safe infant carrying. Results of hair tensile properties are shown to be species-dependent. Analysis of the mechanics of the mounting position, typical of heavier infant carrying among African apes, shows that both clinging and friction are necessary to carry heavy infants. As a consequence, a required relationship between infant weight, hair–hair friction coefficient, and body angle exists. The hair–hair friction coefficient is measured using natural ape skin samples, and dependence on load and humidity is analyzed. Numerical evaluation of the equilibrium constraint is in agreement with the knuckle-walking quadruped position of African apes. Bipedality is clearly incompatible with the usual clinging and mounting pattern of infant carrying, requiring a revision of models of hominization in relation to the divergence between apes and hominins. These results suggest that safe carrying of heavy infants justify the emergence of biped form of locomotion. Ways to test this possibility are foreseen here.
机译:在所有更高等的非人类灵长类动物中,物种的生存取决于依附在成年人体毛上的婴儿的安全携带。在这项工作中,提出了猿猴毛(长臂猿,猩猩和大猩猩)的机械性能的测量方法,重点是安全携带婴儿的约束条件。头发抗拉性能的结果显示为取决于物种的。对非洲猿类中较重的婴儿抱抱典型的坐姿的力学分析表明,抱抱和摩擦对于抱紧重的婴儿都是必需的。结果,婴儿体重,头发与头发之间的摩擦系数和体角之间存在必要的关系。头发与头发的摩擦系数是使用天然猿猴皮肤样品测量的,并分析了其对负荷和湿度的依赖性。平衡约束的数值评估与非洲猿人的四肢行走四足动物位置一致。两足动物显然与通常的婴儿抱抱和坐骑方式不兼容,因此需要修订有关人猿与人参之间的差异的人性化模型。这些结果表明,安全携带重婴儿可以证明两足动物运动的形式是正确的。这里预见了测试这种可能性的方法。

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