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首页> 外文期刊>The anatomical record: advances in integrative anatomy and evolutionary biology >The Human Shoulder Suspension Apparatus: A Causal Explanation for Bilateral Asymmetry and a Fresh Look at the Evolution of Human Bipedality
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The Human Shoulder Suspension Apparatus: A Causal Explanation for Bilateral Asymmetry and a Fresh Look at the Evolution of Human Bipedality

机译:人体肩膀悬吊装置:双侧不对称的因果解释和人类两足动物进化的全新视角

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The combination of large mastoid processes and clavicles is unique to humans, but the biomechanical and evolutionary significance of their special configuration is poorly understood. As part of the newly conceptualized shoulder suspension apparatus, the mastoid processes and clavicles are shaped by forces exerted by the musculo-fascial components of the cleidomastoid and clavotrapezius muscles as they suspend the shoulders from the head. Because both skeletal elements develop during infancy in tandem with the attainment of an upright posture, increased manual dexterity, and the capacity for walking, we hypothesized that the same forces would have shaped them as the shoulder suspension apparatus evolved in ancestral humans in tandem with an upright posture, increased manual dexterity, and bipedality with swinging arms. Because the shoulder suspension apparatus is subjected to asymmetrical forces from handedness, we predicted that its skeletal features would grow asymmetrically. We used this prediction to test our hypothesis in a natural experiment to correlate the size of the skeletal features with the forces exerted on them. We (1) measured biomechanically relevant bony features within the shoulder suspension apparatus in 101 male human specimens (62 of known handedness); and (2) modeled and analyzed the forces within the shoulder suspension apparatus from X-ray CT data. We identified eight right-handed characters and demonstrated the causal relationship between these right-handed characters and the magnitude and direction of forces acting on them. Our data suggest that the presence of the shoulder suspension apparatus in humans was a necessary precondition for human bipedality. (C) 2015 Wiley Periodicals, Inc.
机译:大型乳突和锁骨的结合是人类独有的,但人们对其特殊结构的生物力学和进化意义知之甚少。作为新概念化的肩膀悬挂设备的一部分,乳突过程和锁骨是由锁骨乳突肌和锁骨肌的肌肉筋膜组件施加的力来塑造的,因为它们使肩膀从头部悬垂下来。由于两个骨骼元素在婴儿期都随着直立姿势,手动灵活性的提高以及行走能力的发展而发展,因此我们推测,当祖先的人类肩部悬吊装置与人类一起进化时,相同的力量将对它们产生影响。直立姿势,增加手灵巧度和双臂摆动双足。由于肩部悬吊装置由于惯用力而受到不对称力的作用,因此我们预测其骨骼特征会不对称地增长。我们使用此预测在自然实验中检验了我们的假设,以将骨骼特征的大小与施加在其上的力相关联。我们(1)在101位男性人体标本中(在已知的62条已知惯用手中)测量了肩膀悬吊装置内与生物力学相关的骨质特征; (2)根据X射线CT数据对肩部悬吊装置内的力进行建模和分析。我们确定了八个右撇子角色,并证明了这些右撇子角色与作用在它们上的力的大小和方向之间的因果关系。我们的数据表明,人类中肩部悬挂装置的存在是人类双足性的必要前提。 (C)2015威利期刊公司

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