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灵长类动物长骨中胶原纤维的取向

Collagen Fiber Orientation in Primate Long Bones.

作者信息

Warshaw Johanna, Bromage Timothy G, Terranova Carl J, Enlow Donald H

机构信息

Department of Basic Science and Craniofacial Biology, New York University College of Dentistry, New York, New York.

Department of Biomaterials and Biomimetics, New York University College of Dentistry, New York, New York.

出版信息

Anat Rec (Hoboken). 2017 Jul;300(7):1189-1207. doi: 10.1002/ar.23571. Epub 2017 Mar 31.

DOI:10.1002/ar.23571
PMID:28205407
Abstract

Studies of variation in orientation of collagen fibers within bone have lead to the proposition that these are preferentially aligned to accommodate different kinds of load, with tension best resisted by fibers aligned longitudinally relative to the load, and compression best resisted by transversely aligned fibers. However, previous studies have often neglected to consider the effect of developmental processes, including constraints on collagen fiber orientation (CFO), particularly in primary bone. Here we use circularly polarized light microscopy to examine patterns of CFO in cross-sections from the midshaft femur, humerus, tibia, radius, and ulna in a range of living primate taxa with varied body sizes, phylogenetic relationships and positional behaviors. We find that a preponderance of longitudinally oriented collagen is characteristic of both periosteal primary and intracortically remodeled bone. Where variation does occur among groups, it is not simply understood via interpretations of mechanical loads, although prioritized adaptations to tension and/or shear are considered. While there is some suggestion that CFO may correlate with body size, this relationship is neither consistent nor easily explicable through consideration of size-related changes in mechanical adaptation. The results of our study indicate that there is no clear relationship between CFO and phylogenetic status. One of the principle factors accounting for the range of variation that does exist is primary tissue type, where slower depositing bone is more likely to comprise a larger proportion of oblique to transverse collagen fibers. Anat Rec, 300:1189-1207, 2017. © 2017 Wiley Periodicals, Inc.

摘要

对骨内胶原纤维取向变化的研究提出,这些纤维优先排列以适应不同类型的负荷,纵向排列的纤维最能抵抗张力,横向排列的纤维最能抵抗压缩力。然而,以往的研究往往忽略了发育过程的影响,包括对胶原纤维取向(CFO)的限制,尤其是在初级骨中。在这里,我们使用圆偏振光显微镜来检查一系列具有不同体型、系统发育关系和位置行为的灵长类动物中,股骨、肱骨、胫骨、桡骨和尺骨中轴截面的CFO模式。我们发现,纵向排列的胶原纤维占优势是骨膜初级骨和皮质内重塑骨的特征。尽管考虑了对张力和/或剪切力的优先适应,但在不同组之间确实存在的变化并不能简单地通过机械负荷的解释来理解。虽然有一些迹象表明CFO可能与体型相关,但通过考虑与体型相关的机械适应变化,这种关系既不一致也不容易解释。我们的研究结果表明,CFO与系统发育地位之间没有明确的关系。造成确实存在的变化范围的主要因素之一是主要组织类型,沉积较慢的骨更可能包含较大比例的倾斜至横向胶原纤维。《解剖学记录》,300:1189 - 1207,2017年。© 2017威利期刊公司。

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