Arias-Martorell Julia
Animal Postcranial Evolution Lab Skeletal Biology Research Centre School of Anthropology and Conservation University of Kent Canterbury UK.
Ecol Evol. 2018 Dec 30;9(1):703-722. doi: 10.1002/ece3.4392. eCollection 2019 Jan.
The glenohumeral joint, the most mobile joint in the body of hominoids, is involved in the locomotion of all extant primates apart from humans. Over the last few decades, our knowledge of how variation in its morphological characteristics relates to different locomotor behaviors within extant primates has greatly improved, including features of the proximal humerus and the glenoid cavity of the scapula, as well as the muscles that function to move the joint (the rotator cuff muscles). The glenohumeral joint is a region with a strong morphofunctional signal, and hence, its study can shed light on the locomotor behaviors of crucial ancestral nodes in the evolutionary history of hominoids (e.g., the last common ancestor between humans and chimpanzees). Hominoids, in particular, are distinct in showing round and relatively big proximal humeri with lowered tubercles and flattened and oval glenoid cavities, morphology suited to engage in a wide range of motions, which enables the use of locomotor behaviors such as suspension. The comparison with extant taxa has enabled more informed functional interpretations of morphology in extinct primates, including hominoids, from the Early Miocene through to the emergence of hominins. Here, I review our current understanding of glenohumeral joint functional morphology and its evolution throughout the Miocene and Pleistocene, as well as highlighting the areas where a deeper study of this joint is still needed.
肩关节是类人猿身体中活动度最大的关节,除人类外,所有现存灵长类动物的运动都涉及该关节。在过去几十年里,我们对于其形态特征的变化如何与现存灵长类动物的不同运动行为相关的认识有了很大提高,这些特征包括肱骨近端和肩胛骨的关节盂,以及使关节运动的肌肉(肩袖肌肉)。肩关节是一个具有强烈形态功能信号的区域,因此,对其研究可以揭示类人猿进化史上关键祖先节点的运动行为(例如,人类和黑猩猩的最后共同祖先)。特别是类人猿,其肱骨近端呈圆形且相对较大,结节较低,关节盂扁平呈椭圆形,这种形态适合进行广泛的运动,从而能够采用如悬吊等运动行为。与现存分类群的比较使得对包括类人猿在内的已灭绝灵长类动物从早中新世到人类出现期间的形态进行更有依据的功能解释成为可能。在此,我回顾了我们目前对肩关节功能形态及其在整个中新世和更新世的进化的理解,并强调了仍需要对该关节进行更深入研究的领域。