[Preoperative Simulation of Neuroendovascular Therapy Using a Three-Dimensional Printer Model of a Tailor-Made Hollow Cerebral Aneurysm].

Q4 Medicine Neurological Surgery Pub Date : 2024-03-01 DOI:10.11477/mf.1436204914
Jun Haruma, Ryu Kimura, Masafumi Hiramatsu, Kenji Sugiu
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引用次数: 0

Abstract

Several studies have reported the importance of preoperative simulations. This report describes the methods and utility of neuroendovascular treatment using a three-dimensional(3D)-printed hollow cerebral aneurysm model. This model was created using a stereolithography apparatus-type 3D printer with digital imaging and communications in medicine data from 3D digital subtraction angiograms. The 3D model was used to perform preoperative simulations of microcatheter placement in aneurysms, microguidewire manipulation, and stent deployment. We performed each simulated procedure during surgery. The hollow cerebral aneurysm 3D model can also be used as a training model for surgical trainees. Preoperative simulation using a high-precision hollow cerebral aneurysm model created using 3D printers enables the discussion of specific treatment strategies for each case, including new devices and device sizes, and is expected to develop into "tailor-made medicine" in the future, contributing to safe and reliable treatment implementation.

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[利用量身定制的空心脑动脉瘤三维打印机模型进行神经血管疗法术前模拟]。
一些研究报告指出了术前模拟的重要性。本报告介绍了使用三维(3D)打印空心脑动脉瘤模型进行神经血管治疗的方法和效用。该模型是利用立体光刻设备型三维打印机和三维数字减影血管造影的数字成像和医学通信数据创建的。该三维模型用于术前模拟动脉瘤微导管置入、微导丝操作和支架部署。我们在手术中执行了每个模拟程序。空心脑动脉瘤三维模型还可用作外科学员的培训模型。使用三维打印机制作的高精度空心脑动脉瘤模型进行术前模拟,可以针对每个病例讨论具体的治疗策略,包括新设备和设备尺寸,有望在未来发展成为 "量身定制的医学",为实施安全可靠的治疗做出贡献。
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
Neurological Surgery
Neurological Surgery Medicine-Medicine (all)
自引率
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发文量
99
期刊最新文献
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