Endovascular treatment simulations using a novel in vitro brain arteriovenous malformation model based on three-dimensional printing millifluidic technology.

IF 2.1 4区 医学 Q3 Medicine
Interventional Neuroradiology Pub Date : 2026-08-01 Epub Date: 2023-06-22 DOI:10.1177/15910199231184605
Rodrigo Rivera, Alvaro Cespedes, Juan Pablo Cruz, Gladys Carlota Rivera, Alvaro Valencia, Aymeric Rouchaud, Charbel Mounayer
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引用次数: 0

Abstract

BackgroundBrain arteriovenous malformations (bAVM) are complex vascular diseases. Several models have been used to simulate endovascular treatments; thus in vitro models have not been widely employed because it has been difficult to recreate realistic phantoms of this disease.ObjectiveTo describe the development and evaluate the preliminary experience of a novel bAVM in vitro model for endovascular embolization using millifluidic three-dimensional (3D) printing technology.MethodsWe designed a bAVM phantom starting from simple to more complex designs, composed of a nidus, feeding arteries and draining vein. We recreate the design by using millifluidic technology with stereolithography 3D printing. Structural and functional tests were performed using angiographic images and computer flow dynamics. Treatment simulations with ethylene vinyl alcohol were tested using two different microcatheter position techniques. A Likert-scale questionnaire was applied to perform a qualitative evaluation of the model.ResultsWe developed a realistic model of a bAVM with hollow channels. The structural evaluation showed a high precision of the 3D printing process. Embolization tests with the liquid agent gave similar sensations and material behaviour as in vivo cases. There were no significant differences between microcatheter position techniques, thus we observed a trend for better nidus filling with a deeper in-nidus position technique.ConclusionsWe were able to create and test a novel bAVM in vitro model with stereolithography 3D printing in resin. It showed a high capacity for simulating endovascular embolization characteristics, with an excellent user experience. It could be potentially used for training and testing of bAVM embolizations.

使用基于三维打印微流体技术的新型体外脑动静脉畸形模型进行血管内治疗模拟。
背景:脑动静脉畸形是一种复杂的血管疾病。已经使用了几个模型来模拟血管内治疗;因此,体外模型并没有得到广泛应用,因为很难重现这种疾病的真实模型。目的:描述一种新的bVM体外模型的开发,并评估其初步经验,该模型用于使用微流体三维打印技术进行血管内栓塞。方法:我们设计了一个bAVM体模,从简单到复杂的设计,由巢、供血动脉和引流静脉组成。我们通过使用微流体技术和立体光刻3D打印来重新设计。使用血管造影图像和计算机血流动力学进行结构和功能测试。使用两种不同的微导管定位技术测试了乙烯-乙烯醇的处理模拟。采用Likert量表对模型进行定性评价。结果:我们开发了一个具有空心通道的bAVM的真实模型。结构评估显示了3D打印过程的高精度。液体制剂的栓塞试验给出了与体内病例相似的感觉和物质行为。微导管定位技术之间没有显著差异,因此我们观察到用更深的窝内定位技术更好地填充窝的趋势。结论:我们能够在树脂中用立体光刻3D打印创建并测试一种新的bAVM体外模型。它显示出模拟血管内栓塞特性的高能力,具有良好的用户体验。它有可能用于bAVM栓塞的训练和测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.80
自引率
11.80%
发文量
192
审稿时长
6-12 weeks
期刊介绍: Interventional Neuroradiology (INR) is a peer-reviewed clinical practice journal documenting the current state of interventional neuroradiology worldwide. INR publishes original clinical observations, descriptions of new techniques or procedures, case reports, and articles on the ethical and social aspects of related health care. Original research published in INR is related to the practice of interventional neuroradiology...
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