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一种基于微结构的新参数,用于预测同种异体骨的微观力学性能。

A New Microarchitecture-Based Parameter to Predict the Micromechanical Properties of Bone Allografts.

作者信息

Xiong Zhuang, Rouquier Léa, Chappard Christine, Bachy Manon, Huang Xingrong, Potier Esther, Bensidhoum Morad, Hoc Thierry

机构信息

Université Paris Cité, CNRS, INSERM, ENVA, B3OA, 75010 Paris, France.

Department of Pediatric Orthopedic Surgery, Armand Trousseau Hospital, Assistance Publique-Hôpitaux de Paris, Sorbonne University, 75012 Paris, France.

出版信息

Materials (Basel). 2023 Apr 25;16(9):3349. doi: 10.3390/ma16093349.

Abstract

Scaffolds are an essential component of bone tissue engineering. They provide support and create a physiological environment for cells to proliferate and differentiate. Bone allografts extracted from human donors are promising scaffolds due to their mechanical and structural characteristics. Bone microarchitecture is well known to be an important determinant of macroscopic mechanical properties, but its role at the microscopic, i.e., the trabeculae level is still poorly understood. The present study investigated linear correlations between microarchitectural parameters obtained from X-ray computed tomography (micro-CT) images of bone allografts, such as bone volume fraction (BV/TV), degree of anisotropy (DA), or ellipsoid factor (EF), and micromechanical parameters derived from micro-finite element calculations, such as mean axial strain (ε) and strain energy density (W). DAEF, a new parameter based on a linear combination of the two microarchitectural parameters DA and EF, showed a strong linear correlation with the bone mechanical characteristics at the microscopic scale. Our results concluded that the spatial distribution and the plate-and-rod structure of trabecular bone are the main determinants of the mechanical properties of bone at the microscopic level. The DAEF parameter could, therefore, be used as a tool to predict the level of mechanical stimulation at the local scale, a key parameter to better understand and optimize the mechanism of osteogenesis in bone tissue engineering.

摘要

支架是骨组织工程的重要组成部分。它们为细胞增殖和分化提供支持并创造生理环境。从人类供体提取的骨同种异体移植物因其机械和结构特性而成为有前景的支架。众所周知,骨微结构是宏观力学性能的重要决定因素,但其在微观层面,即小梁水平的作用仍知之甚少。本研究调查了从骨同种异体移植物的X射线计算机断层扫描(显微CT)图像获得的微结构参数之间的线性相关性,如骨体积分数(BV/TV)、各向异性程度(DA)或椭球体因子(EF),以及从微观有限元计算得出的微观力学参数,如平均轴向应变(ε)和应变能密度(W)。DAEF是基于DA和EF这两个微结构参数的线性组合的新参数,在微观尺度上与骨力学特性呈现出很强的线性相关性。我们的结果表明,小梁骨的空间分布和板-杆结构是微观层面骨力学性能的主要决定因素。因此,DAEF参数可作为预测局部尺度机械刺激水平的工具,这是更好地理解和优化骨组织工程中骨生成机制的关键参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7ae/10179528/734ee3b8b680/materials-16-03349-g001.jpg

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