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使用Stratasys J750 3D打印的顺应性血管模型:采用血管内超声对模型可扩张性进行直接表征

Compliant vascular models 3D printed with the Stratasys J750: a direct characterization of model distensibility using intravascular ultrasound.

作者信息

Sparks Adam J, Smith Cody M, Allman Ariana B, Senko Jillian L, Meess Karen M, Ducharme Richard W, Springer Michael E, Waqas Muhammad, Siddiqui Adnan H

机构信息

The Jacobs Institute, Buffalo, New York, USA.

Department of Neurosurgery, University at Buffalo, State University of New York, 100 High Street, Suite B4, Buffalo, NY, 14203, USA.

出版信息

3D Print Med. 2021 Sep 3;7(1):28. doi: 10.1186/s41205-021-00114-8.

Abstract

PURPOSE

The purpose of this study is to evaluate biomechanical accuracy of 3D printed anatomical vessels using a material jetting printer (J750, Stratasys, Rehovot, Israel) by measuring distensibility via intravascular ultrasound.

MATERIALS AND METHODS

The test samples are 3D printed tubes to simulate arterial vessels (aorta, carotid artery, and coronary artery). Each vessel type is defined by design geometry of the vessel inner diameter and wall thickness. Vessel inner diameters are aorta = 30mm, carotid = 7mm, and coronary = 3mm. Vessel wall thickness are aorta = 3mm, carotid = 1.5mm, and coronary = 1mm. Each vessel type was printed in 3 different material options. Material options are user-selected from the J750 printer software graphical user interface as blood vessel wall anatomy elements in 'compliant', 'slightly compliant', and 'rigid' options. Three replicates of each vessel type were printed in each of the three selected material options, for a total of 27 models. The vessels were connected to a flow loop system where pressure was monitored via a pressure wire and cross-sectional area was measured with intravascular ultrasound (IVUS). Distensibility was calculated by comparing the % difference in cross-sectional area vs. pulse pressure to clinical literature values. Target clinical ranges for normal and diseased population distensibility are 10.3-44 % for the aorta, 5.1-10.1 % for carotid artery, and 0.5-6 % for coronary artery.

RESULTS

Aorta test vessels had the most clinically representative distensibility when printed in user-selected 'compliant' and 'slightly compliant' material. All aorta test vessels of 'compliant' material (n = 3) and 2 of 3 'slightly compliant' vessels evaluated were within target range. Carotid vessels were most clinically represented in distensibility when printed in 'compliant' and 'slightly compliant' material. For carotid test vessels, 2 of 3 'compliant' material samples and 1 of 3 'slightly compliant' material samples were within target range. Coronary arteries were most clinically represented in distensibility when printed in 'slightly compliant' and 'rigid' material. For coronary test vessels, 1 of 3 'slightly compliant' materials and 3 of 3 'rigid' material samples fell within target range.

CONCLUSIONS

This study suggests that advancements in materials and 3D printing technology introduced with the J750 Digital Anatomy 3D Printer can enable anatomical models with clinically relevant distensibility.

摘要

目的

本研究的目的是通过血管内超声测量扩张性,以评估使用材料喷射打印机(J750,Stratasys,雷霍沃特,以色列)3D打印的解剖血管的生物力学准确性。

材料与方法

测试样品为模拟动脉血管(主动脉、颈动脉和冠状动脉)的3D打印管。每种血管类型由血管内径和壁厚的设计几何形状定义。血管内径分别为主动脉30mm、颈动脉7mm和冠状动脉3mm。血管壁厚分别为主动脉3mm、颈动脉1.5mm和冠状动脉1mm。每种血管类型均采用3种不同的材料选项进行打印。材料选项是用户从J750打印机软件图形用户界面中作为血管壁解剖元素在“顺应性”、“稍顺应性”和“刚性”选项中选择的。每种血管类型的三个复制品在三种选定的材料选项中各打印一份,共27个模型。将血管连接到血流回路系统,通过压力导线监测压力,并用血管内超声(IVUS)测量横截面积。通过比较横截面积与脉压的百分比差异与临床文献值来计算扩张性。正常和患病群体扩张性的目标临床范围为主动脉10.3 - 44%、颈动脉5.1 - 10.1%和冠状动脉0.5 - 6%。

结果

当采用用户选择的“顺应性”和“稍顺应性”材料打印时,主动脉测试血管具有最具临床代表性的扩张性。所有“顺应性”材料的主动脉测试血管(n = 3)和评估的3个“稍顺应性”血管中的2个均在目标范围内。当采用“顺应性”和“稍顺应性”材料打印时,颈动脉血管在扩张性方面最具临床代表性。对于颈动脉测试血管,3个“顺应性”材料样本中的2个和3个“稍顺应性”材料样本中的1个在目标范围内。当采用“稍顺应性”和“刚性”材料打印时,冠状动脉在扩张性方面最具临床代表性。对于冠状动脉测试血管,3个“稍顺应性”材料中的1个和3个“刚性”材料样本中的所有3个均在目标范围内。

结论

本研究表明,J750数字解剖3D打印机引入的材料和三维打印技术的进步能够实现具有临床相关扩张性的解剖模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f9f/8414686/2465bd02ee2d/41205_2021_114_Fig1_HTML.jpg

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