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利用光学相机和虚拟路线图成像进行无辐射的类血管造影神经血管训练。

Angiography-like neurovascular training without radiation utilizing optical cameras and virtual roadmap imaging.

作者信息

Klebingat Stefan, Schwab Roland, Feierabend Stefanie, Stolze Franka, Behme Daniel

机构信息

University Clinic for Neuroradiology, University Hospital Magdeburg, Magdeburg, Germany.

Research Campus STIMULATE, Otto-von-Guericke University Magdeburg, Magdeburg, Germany.

出版信息

Interv Neuroradiol. 2025 Sep 8:15910199251375533. doi: 10.1177/15910199251375533.

Abstract

BackgroundAt present, nonvirtual neurovascular training can be performed using either an angiographic suite under fluoroscopic guidance (entailing radiation exposure) or direct optical visualization with a camera-based system. The angiographic approach offers high-fidelity visualization and catheter control but is constrained by the limited availability of such specialized facilities, whereas the camera-based approach can be implemented virtually anywhere yet lacks comparable realism in key procedural aspects. The objective of this work is to develop and evaluate a novel camera-based angiography training system (CBATS) that generates artificial angiograms and roadmaps, thereby combining the advantages of both imaging techniques while eliminating radiation exposure.MethodsThree distinct aneurysm models were integrated into a novel neurointerventional training platform, which was evaluated by neurointerventionalists across three training imaging modalities (conventional digital subtraction angiography [DSA], camera-only visualization, and CBATS) to simulate general endovascular procedures. Following the training sessions, a questionnaire-based evaluation was conducted to compare the performances of the camera-only and CBATS approaches with the conventional DSA, which served as the gold standard.ResultsNinety percent of the raters agree that the visual realism of our CBATS training system is comparable to real angiography and offers a significant advantage over the camera-only variant. The absence of radiation, in particular, was rated as a major advantage by 89.3% of the raters.ConclusionsIn summary, our angiography-like training system is considered comparable to a real angiography system in terms of realism for the training scenarios addressed. However, it offers the advantage of being radiation-free and can be set up in almost any location.

摘要

背景

目前,非虚拟神经血管训练可以通过在荧光透视引导下的血管造影套件(存在辐射暴露)或使用基于摄像头的系统进行直接光学可视化来完成。血管造影方法提供高保真可视化和导管控制,但受到此类专业设施可用性有限的限制,而基于摄像头的方法几乎可以在任何地方实施,但在关键操作方面缺乏可比的真实感。这项工作的目的是开发和评估一种新型的基于摄像头的血管造影训练系统(CBATS),该系统可生成人工血管造影和路线图,从而结合两种成像技术的优点,同时消除辐射暴露。

方法

将三种不同的动脉瘤模型集成到一个新型神经介入训练平台中,神经介入专家通过三种训练成像模式(传统数字减影血管造影[DSA]、仅摄像头可视化和CBATS)对其进行评估,以模拟一般血管内手术。训练课程结束后,进行了基于问卷的评估,以比较仅摄像头和CBATS方法与作为金标准的传统DSA的性能。

结果

90%的评估者一致认为,我们的CBATS训练系统的视觉真实感与真实血管造影相当,并且比仅摄像头变体具有显著优势。特别是,89.3%的评估者将无辐射评为主要优势。

结论

总之,就所涉及的训练场景的真实感而言,我们的类似血管造影的训练系统被认为与真实血管造影系统相当。然而,它具有无辐射的优势,并且几乎可以在任何位置设置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0896/12417467/2d09908b9e61/10.1177_15910199251375533-fig1.jpg

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