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用于骨重建的多孔可吸收支架的仿生设计:一项初步研究。

Bio-Inspired Design of a Porous Resorbable Scaffold for Bone Reconstruction: A Preliminary Study.

作者信息

Scerrato Daria, Bersani Alberto Maria, Giorgio Ivan

机构信息

Dipartimento di Scienze di Base ed Applicate per l'Ingegneria (SBAI), University of Rome La Sapienza, 00161 Roma, Italy.

International Research Center for the Mathematics and Mechanics of Complex Systems (M&MoCS), University of L'Aquila, 67100 L'Aquila, Italy.

出版信息

Biomimetics (Basel). 2021 Mar 10;6(1):18. doi: 10.3390/biomimetics6010018.

Abstract

The study and imitation of the biological and mechanical systems present in nature and living beings always have been sources of inspiration for improving existent technologies and establishing new ones. Pursuing this line of thought, we consider an artificial graft typical in the bone reconstruction surgery with the same microstructure of the bone living tissue and examine the interaction between these two phases, namely bone and the graft material. Specifically, a visco-poroelastic second gradient model is adopted for the bone-graft composite system to describe it at a macroscopic level of observation. The second gradient formulation is employed to consider possibly size effects and as a macroscopic source of interstitial fluid flow, which is usually regarded as a key factor in bone remodeling. With the help of the proposed formulation and via a simple example, we show that the model can be used as a graft design tool. As a matter of fact, an optimization of the characteristics of the implant can be carried out by numerical investigations. In this paper, we observe that the size of the graft considerably influences the interaction between bone tissue and artificial bio-resorbable material and the possibility that the bone tissue might substitute more or less partially the foreign graft for better bone healing.

摘要

对自然界和生物体内存在的生物和机械系统进行研究和模仿,一直是改进现有技术和建立新技术的灵感来源。顺着这一思路,我们考虑一种在骨重建手术中典型的人工移植物,它具有与骨活组织相同的微观结构,并研究这两个阶段之间的相互作用,即骨与移植物材料之间的相互作用。具体而言,采用粘弹性多孔第二梯度模型来描述骨-移植物复合系统在宏观观测层面的情况。采用第二梯度公式来考虑可能的尺寸效应,并作为组织液流动的宏观来源,而组织液流动通常被视为骨重塑的关键因素。借助所提出的公式并通过一个简单示例,我们表明该模型可作为移植物设计工具。事实上,可以通过数值研究对植入物的特性进行优化。在本文中,我们观察到移植物的尺寸对骨组织与人工生物可吸收材料之间的相互作用以及骨组织或多或少部分替代外来移植物以实现更好骨愈合的可能性有很大影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06e2/8006156/135456afc7cb/biomimetics-06-00018-g001.jpg

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