人类胫骨远端小梁骨个体发育。

IF 1.7 2区 生物学 Q1 ANTHROPOLOGY
Rebecca A. G. Reid, Catriona Davies, Craig Cunningham
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引用次数: 0

摘要

目的:人们对小梁骨在个体发育过程中如何适应生物力学变化的了解越来越多。然而,胫骨远端作为踝关节的一部分在负重运动中很重要,关于胫骨远端的研究有限。本研究旨在记录胫骨远端小梁的个体发生模式,以及其结构异质性的变化。材料和方法:从Scheuer少年骨骼收集的38块远端胫骨,年龄从28宫内周到8出生年不等。小梁骨分析采用定量体积感兴趣的方法和定性全骨绘图后,显微计算机断层扫描。结果:胎儿和围产期胫骨缺乏成熟组织,骨量分数高。在出生后的第一年,骨体积分数会减少,并且有早期胫骨远端骨小梁支重组的迹象。一岁后,胫骨远端表现出骨小梁结构的不均匀性。讨论:胎儿和围产期胫骨远端骨小梁结构缺乏成熟的组织,而是反映骨化模式。在这些阶段,骨量的快速积累与妊娠期生产过剩有关,假设是为随后的产后变化做准备。在生命的第一年,体积分数下降,与建设性回归有关。据推测,除了生长需求外,这与两足步态相关的生物力学力的变化有关。一岁后,胫骨远端表现出结构异质性,小梁适应适应特定的双足应力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trabecular Bone Ontogeny of the Human Distal Tibia

Objectives

There is an increasing understanding of how trabecular bone adapts to biomechanical changes during ontogeny. However, limited research exists regarding the distal tibia, which is important in weight-bearing locomotion as part of the ankle joint. This study aims to document the ontogenetic trabecular patterns of the distal tibia, in addition to changes in its structural heterogeneity.

Materials and Methods

Thirty-eight distal tibiae, ranging in age from 28 intrauterine weeks to 8 postnatal years, from the Scheuer juvenile skeletal collection were examined. Trabecular bone was analyzed using a quantitative volume of interest approach and qualitative whole bone mapping following microcomputed tomography.

Results

Fetal and perinatal tibia lack mature organization and are associated with high bone volume fraction. During the first year of life, there is a decrease in bone volume fraction and an indication of early re-organization of trabecular struts in the distal tibia. After one year of age, the distal tibia exhibits increased trabecular structural heterogeneity.

Discussion

The trabecular architecture of the fetal and perinatal distal tibia lacks mature organization and instead reflects ossification patterns. At these stages, there is a rapid accumulation of bone mass associated with gestational overproduction, hypothesized to be in preparation for subsequent postnatal changes. During the first year of life there is a decrease in volume fraction, associated with constructive regression. It is postulated this is related to changing biomechanical forces associated with the bipedal gait, in addition to growth demands. After one year of age, the distal tibia exhibits structural heterogeneity with trabecular adaption to accommodate specific bipedal stresses.

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