Verification of software-based preoperative simulation of flow diverters in clinical cases

Author:

Wang Yixuan1ORCID,Yang Xinjian2ORCID,Zhu Wei2,Wang Xinlan1,Yao Yangyang3,Lu Wangsheng3,Yang Guangming3,Qin Lan3,Liu Jian2ORCID,Li Miao1ORCID

Affiliation:

1. Department of Neurosurgery, The China-Japan Union Hospital, Jilin University, Changchun, China

2. Department of Interventional Neuroradiology, Beijing Neurosurgical Institute and Beijing Tiantan Hospital, Capital Medical University, Beijing, China

3. UnionStrong (Beijing) Technology Co. Ltd, Beijing, China

Abstract

Objective The authors sought to verify the use of a preoperative simulation software for the treatment of intracranial aneurysms using flow diverters (FDs) based on three-dimensional rotational angiography (3DRA) data. Methods Based on 3DRA data, the preoperative simulation software (UKNOW) was used to simulate the deployment of virtual FDs. The length and dimensions of virtual and real devices were compared. The deployment plan recommended by the UKNOW software was preliminarily used to complete implantations in the real world. During the experiment, experienced neurointerventional experts were responsible for supervising and judging information such as the length, dimension, and deployment location of the FDs. Results This study retrospectively analyzed the data of 29 patients who received FD treatment. There was no statistical difference between the length of the real device and the virtual device ( p = 0.6). The dimensions of FDs recommended by the software were consistent with the dimensions used in 24 out of the 29 real cases. In four of the remaining five cases, neurointerventional experts found that the FD dimensions recommended by the software were superior to those were actually used. Thus, the accuracy rate for FD dimension recommendations by the UKNOW software was 96.6% (28/29). Procedures performed in five cases using deployment plans recommended by the UKNOW software all achieved good postoperative results; the deployment positions of the device were reasonable, and all devices showed good wall adherence. Conclusions UKNOW software could accurately simulate the length and deployment position of the real FDs and provide suitable device dimensions.

Funder

National Natural Science Foundation of China

Beijing Municipal Administration of Hospitals Incubating Program

“13·5” Science and Technology Research Planning Project of Jilin Education Department

Publisher

SAGE Publications

Subject

Immunology

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