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用于改善颅内动脉瘤夹闭模拟的距离和力可视化。

Distance and force visualisations for improved simulation of intracranial aneurysm clipping.

机构信息

Faculty of Computer Science, Otto-von-Guericke University Magdeburg, Universitätsplatz 2, 39106, Magdeburg, Germany.

University Hospital Magdeburg, Leipziger Str. 44, 39120, Magdeburg, Germany.

出版信息

Int J Comput Assist Radiol Surg. 2021 Aug;16(8):1297-1304. doi: 10.1007/s11548-021-02413-1. Epub 2021 May 29.

Abstract

PURPOSE

The treatment of cerebral aneurysms shifted from microsurgical to endovascular therapy. But for some difficult aneurysm configurations, e.g. wide neck aneurysms, microsurgical clipping is better suited. From this combination of limited interventions and the complexity of these cases, the need for improved training possibilities for young neurosurgeons arises.

METHOD

We designed and implemented a clipping simulation that requires only a monoscopic display, mouse and keyboard. After a virtual craniotomy, the user can apply a clip at the aneurysm which is deformed based on a mass-spring model. Additionally, concepts for visualising distances as well as force were implemented. The distance visualisations aim to enhance spatial relations, improving the navigation of the clip. The force visualisations display the force acting on the vessel surface by the applied clip. The developed concepts include colour maps and visualisations based on rays, single objects and glyphs.

RESULTS

The concepts were quantitatively evaluated via an online survey and qualitatively evaluated by a neurosurgeon. Regarding force visualisations, a colour map is the most appropriate concept. The necessity of distance visualisations became apparent, as the expert was unable to estimate distances and to properly navigate the clip. The distance rays were the only concept supporting the navigation appropriately.

CONCLUSION

The easily accessible surgical training simulation for aneurysm clipping benefits from a visualisation of distances and simulated forces.

摘要

目的

脑动脉瘤的治疗已经从显微手术转向血管内治疗。但是对于一些困难的动脉瘤形态,例如宽颈动脉瘤,显微夹闭术更适合。由于这种有限的干预措施的组合以及这些病例的复杂性,需要为年轻的神经外科医生提供更好的培训可能性。

方法

我们设计并实现了一种仅需单目显示器、鼠标和键盘的夹闭模拟。在虚拟开颅术后,用户可以在动脉瘤处应用夹子,该夹子基于质量-弹簧模型变形。此外,还实现了可视化距离和力的概念。距离可视化旨在增强空间关系,改善夹子的导航。力可视化显示应用夹子对血管表面的作用力。所开发的概念包括基于颜色图和光线、单个对象和字形的可视化。

结果

通过在线调查对概念进行了定量评估,并由神经外科医生进行了定性评估。关于力可视化,颜色图是最合适的概念。距离可视化的必要性变得明显,因为专家无法估计距离,也无法正确导航夹子。距离光线是唯一能够适当支持导航的概念。

结论

易于访问的动脉瘤夹闭手术培训模拟受益于距离和模拟力的可视化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b573/8295166/c58294fa0bbe/11548_2021_2413_Fig1_HTML.jpg

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