人体软骨肋骨和肋软骨材料的弯曲特性随年龄、性别和钙化程度而变化。

IF 3.4 Q2 ENDOCRINOLOGY & METABOLISM
JBMR Plus Pub Date : 2024-12-03 eCollection Date: 2025-01-01 DOI:10.1093/jbmrpl/ziae153
Megan H Goh, Dennis E Anderson
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引用次数: 0

摘要

肋软骨在胸腔中起着重要的功能作用,但其力学性能尚未得到很好的表征。本研究的目的是表征人类肋软骨的特性,并检查年龄,性别,肋骨水平和钙化程度的影响。我们从24名供体(12名女性和12名男性)中获得了3-6条肋骨的尸体肋软骨样本,并按年龄(47-94岁)均匀分布。外周QCT扫描用于量化几何特性(面积矩)和组织钙化(体积、长度,并分为中央、外周和混合)。对每个样品进行四点弯曲试验,并通过拟合非线性伪弹性模型(由线性和三次分量组成,分为加载和卸载机制)的力学试验数据来评估弯曲刚度和模量结果。使用混合效应回归模型评估性别、年龄、肋骨水平和软骨钙化对弯曲刚度和模量结果的影响。软骨大小(面积矩)男性大于女性,且与年龄呈正相关,而女性软骨钙化体积大于男性。在加载过程中,雄性的刚度(线性和立方)较大,而雌性的模量(线性和立方)较大。线性刚度和模量都与年龄负相关,与钙化正相关,并在肋骨水平之间变化。刚度和模量的立方(非线性)分量与钙化呈正相关,并随肋骨而变化,而模量(但不是刚度)与年龄负相关。在卸载过程中,线性刚度和模量值要低得多,尽管发现了一些类似的关联。总的来说,这项研究增加了我们对肋软骨作为一种非线性粘弹性材料的行为的理解,以及性别、年龄和钙化对力学行为的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bending properties of human cartilaginous ribs and costal cartilage material vary with age, sex, and calcification.

Costal cartilage plays an important functional role in the rib cage, but its mechanical properties have not been well characterized. The objective of this study is to characterize the properties of human costal cartilage and examine the effects of age, sex, rib level, and degree of calcification. We obtained cadaveric costal cartilage samples of ribs 3-6 with intact perichondrium from 24 donors (12 females and 12 males) evenly distributed by age (range 47-94 yr). Peripheral QCT scans were used to quantify geometric properties (area moments) and tissue calcification (as volume, length, and classified as central, peripheral, and mixed). Four-point bending tests were performed on each sample, and bending stiffness and modulus outcomes were evaluated by fitting data from mechanical testing with non-linear pseudo-elastic models (composed of linear and cubic components, separated into loading and unloading regimes). Effects of sex, age, rib level, and cartilage calcification on bending stiffness and modulus outcomes were assessed with mixed-effects regression models. Cartilage size (area moment) was larger in males than females and positively associated with age, while there was more calcification volume in cartilage of females than males. During loading, stiffness (linear and cubic) was larger in males, while modulus (linear and cubic) was larger in females. Linear stiffness and modulus were both negatively associated with age, positively associated with calcification, and varied between rib levels. Cubic (nonlinear) components of stiffness and modulus were positively associated with calcification and varied by rib, while modulus (but not stiffness) was negatively associated with age. During unloading, the linear stiffness and modulus values were much lower, though some similar associations were found. Overall, this study adds to our understanding of the behavior of costal cartilage as a nonlinear visco-elastic material, and the effects of sex, aging, and calcification on mechanical behavior.

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来源期刊
JBMR Plus
JBMR Plus Medicine-Orthopedics and Sports Medicine
CiteScore
5.80
自引率
2.60%
发文量
103
审稿时长
8 weeks
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