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灵长类动物上颈椎柱的功能分析。

Functional analyses of the primate upper cervical vertebral column.

作者信息

Nalley Thierra K, Grider-Potter Neysa

机构信息

Western University of Health Sciences, College of Osteopathic Medicine of the Pacific, Department of Medical Anatomical Sciences, Pomona, CA 91766, USA.

School of Human Evolution and Social Change, Institute of Human Origins, Arizona State University, Tempe, AZ 85287-4101, USA.

出版信息

J Hum Evol. 2017 Jun;107:19-35. doi: 10.1016/j.jhevol.2017.03.010. Epub 2017 Apr 12.

Abstract

Recent work has highlighted functional correlations between direct measures of head and neck posture and primate cervical bony morphology. Primates with more horizontal necks exhibit middle and lower cervical vertebral features that indicate increased mechanical advantage for deep nuchal musculature and mechanisms for column curvature formation and maintenance. How features of the C1 and C2 reflect quantified measures of posture have yet to be examined. This study incorporates bony morphology from the upper cervical levels from 20 extant primate species in order to investigate further how posture correlates with cervical vertebrae morphology. Results from phylogenetic generalized least-squares analyses indicate that few vertebral features exhibit a significant relationship with posture when accounting for differences in size. When size-adjusted traits were correlated with posture, vertebral variation had a stronger relationship with neck posture than head posture variables. Two C1 traits-relative posterior arch length and superior facet curvature-were correlated with neck posture variables. Relative posterior arch length exhibits a positive relationship with neck posture, while superior articular facet curvature demonstrates a negative relationship, such that as the neck becomes more horizontal, the greater the facet curvature. Four C2 features were also correlated with neck posture: relative pedicle and lamina lengths, relative superior facet orientation, and dens orientation. Relative pedicle and lamina lengths become craniocaudally longer as the neck becomes more horizontal. Relative C2 superior facet orientation and dens orientation exhibit negative correlations with posture, such that as the neck becomes more horizontal, the superior facet becomes more caudally inclined and the dens more dorsally inclined. These results produce a similar functional signal observed in the middle and lower cervical spine. Modeling the cervical vertebrae of more pronograde taxa within a sigmoidal spinal column model is further discussed and may prove useful in refining and testing future hypotheses of primate cervical mechanics.

摘要

近期的研究突出了头部和颈部姿势的直接测量与灵长类动物颈椎骨形态之间的功能相关性。颈部更水平的灵长类动物表现出颈椎中下部的特征,这些特征表明项深部肌肉的机械优势增加,以及脊柱曲度形成和维持的机制。第一颈椎(C1)和第二颈椎(C2)的特征如何反映姿势的量化测量尚未得到研究。本研究纳入了20种现存灵长类物种上颈椎水平的骨形态,以进一步研究姿势与颈椎形态之间的相关性。系统发育广义最小二乘法分析结果表明,在考虑大小差异时,很少有椎骨特征与姿势呈现显著关系。当对大小进行调整后的特征与姿势相关时,椎骨变异与颈部姿势的关系比与头部姿势变量的关系更强。两个C1特征——相对后弓长度和上关节面曲率——与颈部姿势变量相关。相对后弓长度与颈部姿势呈正相关,而上关节面曲率呈负相关,即随着颈部变得更加水平,关节面曲率越大。四个C2特征也与颈部姿势相关:相对椎弓根和椎板长度、相对上关节面方向以及齿突方向。随着颈部变得更加水平,相对椎弓根和椎板长度在头尾方向上变得更长。C2相对上关节面方向和齿突方向与姿势呈负相关,即随着颈部变得更加水平,上关节面变得更加向尾侧倾斜,齿突更加向背侧倾斜。这些结果在颈椎中下部产生了类似的功能信号。进一步讨论了在S形脊柱模型中对上颌类群颈椎进行建模,这可能有助于完善和检验未来关于灵长类颈椎力学的假设。

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