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使用3D打印神经血管模型评估机械取栓的挑战和局限性。

Evaluation of challenges and limitations of mechanical thrombectomy using 3D printed neurovascular phantoms.

作者信息

Sommer Kelsey N, Bhurwani Mohammad Mahdi Shiraz, Mokin Maxim, Ionita Ciprian N

机构信息

Department of Biomedical Engineering, University at Buffalo NY 14228.

Canon Stroke and Vascular Research Center, University at Buffalo, Buffalo NY 14208.

出版信息

Proc SPIE Int Soc Opt Eng. 2021 Feb;11601. doi: 10.1117/12.2580962. Epub 2021 Feb 15.

Abstract

The mechanical thrombectomy (MT) efficacy, for large vessel occlusion (LVO) treatment in patients with stroke, could be improved if better teaching and practicing surgical tools were available. We propose a novel approach that uses 3D printing (3DP) to generate patient anatomical vascular variants for simulation of diverse clinical scenarios of LVO treated with MT. 3DP phantoms were connected to a flow loop with physiologically relevant flow conditions, including input flow rate and fluid temperature. A simulated blood clot was introduced into the model and placed in the Middle Cerebral Artery region. Clot location, composition (hard or soft clot), length, and arterial angulation were varied and MTs were simulated using stent retrievers. Device placement relative to the clot and the outcome of the thrombectomy were recorded for each situation. Angiograms were captured before and after LVO simulation and after the MT. Recanalization outcome was evaluated using the Thrombolysis in Cerebral Infarction (TICI) scale. Forty-two 3DP neurovascular phantom benchtop experiments were performed. Clot mechanical properties, hard versus soft, had the highest impact on the MT outcome, with 18/42 proving to be successful with full or partial clot retrieval. Other factors such as device manufacturer and the tortuosity of the 3DP model correlated weakly with the MT outcome. We demonstrated that 3DP can become a comprehensive tool for teaching and practicing various surgical procedures for MT in LVO patients. This platform can help vascular surgeons understand the endovascular devices limitations and patient vascular geometry challenges, to allow surgical approach optimization.

摘要

如果能有更好的教学和实践手术工具,那么用于治疗中风患者大血管闭塞(LVO)的机械取栓术(MT)的疗效可能会得到改善。我们提出了一种新颖的方法,即使用3D打印(3DP)来生成患者解剖血管变体,以模拟接受MT治疗的LVO的各种临床情况。3DP模型与具有生理相关流动条件的流动回路相连,这些条件包括输入流速和流体温度。将模拟血栓引入模型并置于大脑中动脉区域。改变血栓的位置、组成(硬血栓或软血栓)、长度和动脉角度,并使用支架取栓器模拟MT。记录每种情况下设备相对于血栓的放置情况以及取栓结果。在LVO模拟前后以及MT后采集血管造影图像。使用脑梗死溶栓(TICI)量表评估再通结果。进行了42次3DP神经血管模型的台式实验。血栓的机械特性,硬血栓与软血栓,对MT结果影响最大,42次实验中有18次成功实现了全部或部分血栓取出。其他因素,如设备制造商和3DP模型的曲折度,与MT结果的相关性较弱。我们证明,3DP可以成为一种全面的工具,用于教授和实践LVO患者MT的各种手术操作。该平台可以帮助血管外科医生了解血管内设备的局限性以及患者血管几何形状的挑战,从而优化手术方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f6e/8323489/ee5b3a0ed0a5/nihms-1671826-f0001.jpg

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