Simulation of thoracic endovascular aortic repair in a perfused patient-specific model of type B aortic dissection.

IF 2.3 3区 医学 Q3 ENGINEERING, BIOMEDICAL
Lukas Mohl, Roger Karl, Matthias N Hagedorn, Armin Runz, Stephan Skornitzke, Malte Toelle, C Soeren Bergt, Johannes Hatzl, Christian Uhl, Dittmar Böckler, Katrin Meisenbacher, Sandy Engelhardt
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引用次数: 0

Abstract

Purpose: Complicated type B Aortic dissection is a severe aortic pathology that requires treatment through thoracic endovascular aortic repair (TEVAR). During TEVAR a stentgraft is deployed in the aortic lumen in order to restore blood flow. Due to the complicated pathology including an entry, a resulting dissection wall with potentially several re-entries, replicating this structure artificially has proven to be challenging thus far.

Methods: We developed a 3d printed, patient-specific and perfused aortic dissection phantom with a flexible dissection flap and all major branching vessels. The model was segmented from CTA images and fabricated out of a flexible material to mimic aortic wall tissue. It was placed in a pulsatile hemodynamic flow loop. Hemodynamics were investigated through pressure and flow measurements and doppler ultrasound imaging. Surgeons performed a TEVAR intervention including stentgraft deployment under fluoroscopic guidance.

Results: The flexible aortic dissection phantom was successfully incorporated in the hemodynamic flow loop, a systolic pressure of 112 mmHg and physiological flow of 4.05 L per minute was reached. Flow velocities were higher in true lumen with a up to 35.7 cm/s compared to the false lumen with a maximum of 13.3 cm/s, chaotic flow patterns were observed on main entry and reentry sights. A TEVAR procedure was successfully performed under fluoroscopy. The position of the stentgraft was confirmed using CTA imaging.

Conclusions: This perfused in-vitro phantom allows for detailed investigation of the complex inner hemodynamics of aortic dissections on a patient-specific level and enables the simulation of TEVAR procedures in a real endovascular operating environment. Therefore, it could provide a dynamic platform for future surgical training and research.

Abstract Image

在 B 型主动脉夹层患者特异性灌注模型中模拟胸腔内血管主动脉修复术。
目的:并发 B 型主动脉夹层是一种严重的主动脉病变,需要通过胸腔内血管主动脉修复术(TEVAR)进行治疗。在 TEVAR 过程中,主动脉腔内会植入支架以恢复血流。由于病理结构复杂,包括一个入口、由此产生的夹层壁以及可能的多个再入口,迄今为止,人工复制这种结构已被证明具有挑战性:我们开发了一种 3d 打印、患者特异性和灌注的主动脉夹层模型,该模型具有灵活的夹层瓣和所有主要分支血管。该模型由 CTA 图像分割而成,并由柔性材料制成,以模拟主动脉壁组织。模型被放置在脉动血流回路中。血流动力学通过压力和血流测量以及多普勒超声成像进行研究。外科医生在透视引导下进行了 TEVAR 介入治疗,包括支架移植物的部署:结果:柔性主动脉夹层模型成功纳入血流动力学回路,收缩压达到 112 mmHg,生理血流量为每分钟 4.05 L。真腔内的流速最高为 35.7 厘米/秒,而假腔内的流速最高为 13.3 厘米/秒,在主入口和再入口视线处观察到混乱的流动模式。在透视下成功实施了 TEVAR 手术。CTA成像确认了支架移植物的位置:这种灌注体外模型可以详细研究主动脉夹层患者的复杂内部血流动力学,并能在真实的血管内手术环境中模拟 TEVAR 手术。因此,它可以为未来的外科培训和研究提供一个动态平台。
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来源期刊
International Journal of Computer Assisted Radiology and Surgery
International Journal of Computer Assisted Radiology and Surgery ENGINEERING, BIOMEDICAL-RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
CiteScore
5.90
自引率
6.70%
发文量
243
审稿时长
6-12 weeks
期刊介绍: The International Journal for Computer Assisted Radiology and Surgery (IJCARS) is a peer-reviewed journal that provides a platform for closing the gap between medical and technical disciplines, and encourages interdisciplinary research and development activities in an international environment.
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