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基于三维打印技术的创新定制支架移植物制造系统。

An Innovative Customized Stent Graft Manufacture System Assisted by Three-Dimensional Printing Technology.

机构信息

Vascular Department, Beijing Hua Xin Hospital (1st Hospital of Tsinghua University), Beijing, China.

Vascular Department in Qingdao Municipal Hospital East Branch, Shandong, China.

出版信息

Ann Thorac Surg. 2021 Jul;112(1):308-314. doi: 10.1016/j.athoracsur.2020.07.013. Epub 2020 Sep 17.

Abstract

BACKGROUND

Commercially available thoracic aortic stent grafts rarely match the geometric characteristics of the aorta perfectly, which can lead to complications. Customization maybe a solution for this problem, but the delay inherent in the current manufacturing process makes it unable to meet the urgent requirement of acute aortic events. We established and optimized a rapid design and manufacture system for a customized aortic stent graft assisted by 3-dimensional (3D) printing technology. We also evaluated the preliminary feasibility and capability of this customized stent graft.

METHODS

Seven essential production steps comprised the rapid design and manufacture process for the customized stent graft system assisted by 3D printing technology. Optimization of the manufacture process was refined over time in 3 stages. Bench test and in vivo experiments were used to verify the feasibility of this system and evaluate the preliminary usability of the customized stent graft.

RESULTS

After optimization, the theoretical production time of the customized stent graft was reduced to approximately 12 hours. Bench test showed radial forces against the aorta wall were better distributed in the customized stent graft than in the control stent graft. In vivo experimental results showed that the customized stent graft system worked effectively.

CONCLUSIONS

It was feasible to rapidly design and manufacture a customized aortic stent graft assisted by 3D printing technology, which demonstrated better geometric compliance and physical characters in the bench test and in in vivo experimentation. The manufacturing process could be accelerated to approximately 12 hours, which might be optimized further to meet urgent clinic requirements.

摘要

背景

市售的胸主动脉支架移植物很少能与主动脉的几何形状完全匹配,这可能会导致并发症。定制可能是解决这个问题的方法,但当前制造工艺所固有的延迟使其无法满足急性主动脉事件的迫切需求。我们建立并优化了一种使用 3 维(3D)打印技术辅助的定制主动脉支架移植物的快速设计和制造系统。我们还评估了这种定制支架移植物的初步可行性和能力。

方法

3D 打印技术辅助的定制支架移植物系统的快速设计和制造过程包括 7 个关键生产步骤。随着时间的推移,在 3 个阶段对制造过程进行了优化。通过 bench 测试和体内实验验证了该系统的可行性,并评估了定制支架移植物的初步可用性。

结果

经过优化,定制支架移植物的理论生产时间缩短到约 12 小时。bench 测试表明,定制支架移植物对主动脉壁的径向力分布优于对照支架移植物。体内实验结果表明,定制支架移植物系统有效工作。

结论

使用 3D 打印技术快速设计和制造定制主动脉支架移植物是可行的,在 bench 测试和体内实验中表现出更好的几何顺应性和物理特性。制造过程可以加速到大约 12 小时,这可能会进一步优化以满足紧急临床需求。

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