Suppr超能文献

圈养棉顶狨(Saguinus oedipus)长骨中的波动不对称性和方向性不对称性。

Fluctuating and directional asymmetry in the long bones of captive cotton-top tamarins (Saguinus oedipus).

作者信息

Reeves Nicole M, Auerbach Benjamin M, Sylvester Adam D

机构信息

Department of Anatomy, Ross University School of Medicine, Portsmouth, Dominica.

Department of Anthropology, The University of Tennessee, Knoxville, TN.

出版信息

Am J Phys Anthropol. 2016 May;160(1):41-51. doi: 10.1002/ajpa.22942. Epub 2016 Jan 23.

Abstract

OBJECTIVES

Skeletal asymmetries reflect developmental stability and mechanical, functional, and physiological influences on bone growth. In humans, researchers have documented the greatest limb bone bilateral asymmetry in diaphyseal breadths, with less asymmetry in articular and maximum length dimensions. However, it remains unclear as to whether the pattern observed for humans is representative of nonhuman primates, wherein bilateral loading may minimize directional asymmetry. This study adds to the small body of asymmetry data on nonhuman primates by investigating patterns of long bone asymmetry in a skeletal sample of Saguinus oedipus (cotton-top tamarin).

MATERIALS AND METHODS

Humeri, radii, ulnae, femora, and tibiae of 76 adult captive cotton-top tamarin skeletons (48 males, 28 females) were measured bilaterally. We included maximum length, midshaft diaphyseal breadths, and at least one articular measurement for each bone to assess directional (DA) and fluctuating asymmetry (FA) in each dimension.

RESULTS

Most dimensions exhibit significant FA, and very few have significant DA; DA is limited to the lower limb, especially in knee dimensions. Overall, the magnitudes of asymmetry in tamarins have a consistent ranking that follows the same pattern as found in humans.

DISCUSSION

This first study of DA and FA among multiple dimensions throughout the limbs of a non-hominoid primate suggests that previously-reported patterns of human bilateral asymmetry are not exclusive to humans. The results further indicate potential underlying differences in constraints on variation within limb bones. While processes shaping variation await further study, our results argue that different long bone dimensions may reflect dissimilar evolutionary processes.

摘要

目的

骨骼不对称反映了发育稳定性以及对骨骼生长的机械、功能和生理影响。在人类中,研究人员记录到骨干宽度上四肢骨的双侧不对称最为明显,关节和最大长度维度的不对称则较小。然而,人类中观察到的这种模式是否代表非人灵长类动物仍不清楚,在非人灵长类动物中双侧负荷可能会使方向不对称最小化。本研究通过调查棉顶狨(Saguinus oedipus)骨骼样本中的长骨不对称模式,增加了关于非人灵长类动物的少量不对称数据。

材料与方法

对76具成年圈养棉顶狨骨骼(48只雄性,28只雌性)的肱骨、桡骨、尺骨、股骨和胫骨进行双侧测量。我们测量了每根骨头的最大长度、骨干中部宽度以及至少一个关节测量值,以评估每个维度的方向不对称(DA)和波动不对称(FA)。

结果

大多数维度表现出显著的FA,很少有维度有显著的DA;DA仅限于下肢,尤其是在膝关节维度。总体而言,狨猴的不对称程度具有一致的排名,遵循与人类相同的模式。

讨论

这项对一种非类人猿灵长类动物四肢多个维度的DA和FA的首次研究表明,先前报道的人类双侧不对称模式并非人类所特有。结果进一步表明,四肢骨变异的限制可能存在潜在差异。虽然塑造变异的过程有待进一步研究,但我们的结果表明,不同的长骨维度可能反映不同的进化过程。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验