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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Understanding Age‐Induced Cortical Porosity in Women: The Accumulation and Coalescence of Eroded Cavities Upon Existing Intracortical Canals Is the Main Contributor
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Understanding Age‐Induced Cortical Porosity in Women: The Accumulation and Coalescence of Eroded Cavities Upon Existing Intracortical Canals Is the Main Contributor

机译:了解妇女的年龄诱导的皮质孔隙率:侵蚀洞穴在现有的内部运河上的积累和聚结是主要贡献者

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摘要

ABSTRACT Intracortical bone remodeling normally ensures maintenance of the cortical bone matrix and strength, but during aging, this remodeling generates excessive porosity. The mechanism behind the age‐induced cortical porosity is poorly understood and addressed in the present study. This study consists of a histomorphometric analysis of sections of iliac bone specimens from 35 women (age 16–78 years). First, the study shows that the age‐induced cortical porosity reflects an increased pore size rather than an increased pore density. Second, it establishes a novel histomorphometric classification of the pores, which is based on the characteristics of the remodeling sites to which each pore is associated. It takes into consideration (i) the stage of the remodeling event at the level where the pore is sectioned, (ii) whether the event corresponds with the generation of a new pore through penetrative tunneling (type 1 pores) or with remodeling of an existing pore (type 2 pores), and (iii) in the latter case, whether or not the new remodeling event leads to the coalescence of pores. Of note, the advantage of this classification is to relate porosity with its generation mechanism. Third, it demonstrates that aging and porosity are correlated with: a shift from type 1 to type 2 pores, reflecting that the remodeling of existing pores is higher; an accumulation of eroded type 2 pores, reflecting an extended resorption‐reversal phase; and a coalescence of these eroded type 2 pores into enlarged coalescing type 2 cavities. Collectively, this study supports the notion, that age‐related increase in cortical porosity is the result of intracortical remodeling sites upon existing pores, with an extended reversal‐resorption phase (eroded type 2 pores) that may likely result in a delayed or absent initiation of the subsequent bone formation. ? 2017 The Authors. Journal of Bone and Mineral Research Published by Wiley Periodicals Inc.
机译:摘要口腔内骨重塑通常可确保维持皮质骨基质和强度,但在老化期间,这种重塑产生过多的孔隙率。年龄诱导的皮质孔隙率背后的机制在本研究中明显且解决了。该研究包括来自35名女性(16-78岁)的髂骨骨标本部分的组织素质分析。首先,该研究表明,年龄诱导的皮质孔隙率反映了孔径增加而不是增加的孔密度。其次,它建立了孔的新型组织形态形状分类,其基于每个孔的重塑部位的特性。考虑到(i)孔隙分成的水平的重塑事件的阶段,(ii)该事件是否与穿透隧道(1型孔)或具有现有的重塑产生新孔毛孔(2型孔),(iii)在后一种情况下,新的重塑事件是否导致孔的聚结。注意,该分类的优点是将孔隙与其产生机制相关联。第三,表明老化和孔隙率与:从1型到2型孔的偏移,反映现有孔的重塑更高;侵蚀2型孔的积累,反映了延长的吸收反转相;并且这些侵蚀的2型孔的聚结成于扩大的聚结型2腔。本研究支持概念,皮质孔隙率与年龄相关的增加是在现有毛孔上的内耳改造位点的结果,具有可能导致延迟或不存在延迟或不存在的延迟或不存在的延迟或不存在的延迟或不存在启动的结果随后的骨形成。还2017年作者。 Wiley期刊公司骨矿物研究杂志CHINESE。

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