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软组织和植入生物材料力学的四维成像:用于肌腱修复的带倒刺缝线案例研究。

Four-Dimensional Imaging of Soft Tissue and Implanted Biomaterial Mechanics: A Barbed Suture Case Study for Tendon Repair.

出版信息

ACS Appl Mater Interfaces. 2018 Nov 14;10(45):38681-38691. doi: 10.1021/acsami.8b09700. Epub 2018 Nov 5.

Abstract

Timely, recent developments in X-ray microcomputed tomography (XμCT) imaging such as increased resolution and improved sample preparation enable nondestructive time-lapse imaging of polymeric biomaterials when implanted in soft tissue, which we demonstrate herein. Imaging the full three-dimensional (3D) structure of an implanted biomaterial provides new opportunities to assess the micromechanics of the interface between the implant and tissues and how this changes over time as force is applied in load-bearing musculoskeletal applications. In this paper, we present a case study demonstrating in situ XμCT and finite element analysis, using a dynamically loaded barbed suture repair for its novel use in tendon tissue. The aim of this study was to identify the distribution of stress in the suture and tendon as load is applied. The data gained demonstrate a clear 3D visualization of microscale features in both the tissue and implant in wet conditions. XμCT imaging has revealed, for the first time, pores around the suture, preventing full engagement of all the barbs with the tendon tissue. Subsequent finite element analysis reveals the localized stress and strain, which are not evenly distributed along the suture, or throughout the tissue. This case study demonstrates for the first time a powerful in situ mechanical imaging tool, which could be readily adapted by other laboratories to interrogate and optimize the interface between the implanted biomaterials and the soft tissue.

摘要

X 射线微计算机断层扫描(XμCT)成像的最新进展,例如分辨率的提高和样本制备的改进,使得在软组织中植入的聚合物生物材料能够进行无损的时变成像,我们在此展示了这一点。对植入生物材料的完整三维(3D)结构进行成像,为评估植入物与组织之间界面的微观力学以及在受力时随时间的变化提供了新的机会,这在承重肌肉骨骼应用中尤为重要。在本文中,我们展示了一个案例研究,通过对动态加载带倒钩缝线修复的原位 XμCT 和有限元分析,展示了其在肌腱组织中的新颖应用。本研究的目的是确定在施加负载时缝线和肌腱中的应力分布。所获得的数据清楚地显示了湿条件下组织和植入物中微尺度特征的三维可视化。XμCT 成像首次揭示了缝线周围的孔隙,阻止了所有倒钩与肌腱组织的完全接合。随后的有限元分析揭示了局部应力和应变,这些并不均匀分布在缝线或整个组织中。本案例研究首次展示了一种强大的原位力学成像工具,其他实验室可以很容易地采用该工具来研究和优化植入生物材料与软组织之间的界面。

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