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形态学和力学仿生骨结构

Morphological and Mechanical Biomimetic Bone Structures.

作者信息

Parwani R, Curto M, Kao A P, Rowley P J, Pani M, Tozzi G, Barber A H

机构信息

School of Engineering, Anglesea Building, Anglesea Road, University of Portsmouth, Portsmouth PO1 3DJ, United Kingdom.

School of Earth and Environmental Sciences, Burnaby Building, Burnaby Road, University of Portsmouth, Portsmouth PO1 3QL, United Kingdom.

出版信息

ACS Biomater Sci Eng. 2017 Nov 13;3(11):2761-2767. doi: 10.1021/acsbiomaterials.6b00652. Epub 2017 Jan 9.

Abstract

Cortical bone is an example of a mineralized tissue containing a compositional distribution of hard and soft phases in 3-dimensional space for mechanical function. X-ray computed tomography (XCT) is able to describe this compositional and morphological complexity but methods to provide a physical output with comparable mechanical function is lacking. A workflow is presented here to establish a method of using high contrast XCT to establish a virtual model of cortical bone that is manufactured using a multiple material capable 3D printer. Resultant 3D printed structures were produced based on more and less remodelled bone designs exhibiting a range of secondary osteon density. Variation in resultant mechanical properties of the 3D printed composite structures for each bone design was achieved using a combination of material components and reasonable prediction of elastic modulus provided using a Hashin-Shtrikman approach. The ability to 3D print composite structures using high contrast XCT to distinguish between compositional phases in a biological structure promises improved anatomical models as well as next-generation mechano-mimetic implants.

摘要

皮质骨是一种矿化组织的例子,它在三维空间中包含硬相和软相的成分分布以实现机械功能。X射线计算机断层扫描(XCT)能够描述这种成分和形态的复杂性,但缺乏提供具有可比机械功能的物理输出的方法。本文提出了一种工作流程,以建立一种使用高对比度XCT来建立皮质骨虚拟模型的方法,该模型使用多材料3D打印机制造。基于或多或少经过重塑的骨设计,生成了具有一系列二级骨单位密度的3D打印结构。通过材料成分的组合以及使用Hashin-Shtrikman方法对弹性模量的合理预测,实现了每种骨设计的3D打印复合结构的力学性能变化。使用高对比度XCT区分生物结构中的成分相来3D打印复合结构的能力,有望改进解剖模型以及下一代机械仿生植入物。

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