新型下一代分流器的计算流动动力学。

IF 4.5 1区 医学 Q1 NEUROIMAGING
Madison M Patrick, Sandhya Santhanaraman, Jayendiran Raja, Alexander L Coon, Geoffrey P Colby, Jessica K Campos, Matthew Lawson, Narlin B Beaty
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引用次数: 0

摘要

背景:血流分流支架(FDS)已经彻底改变了大、巨、宽颈颅内动脉瘤的治疗。FDS通过重定向载动脉内的血流,促进血栓形成和动脉瘤闭塞。这种血管内治疗方法已被证明是有效的,尽管仍有改进的余地。该研究评估了新型exceed Elite FDS (Elite)的计算流动力学(CFD)和技术可行性,并将其与具有屏蔽技术的管道栓塞装置(PED-Shield)进行了比较。方法:对exceed Elite FDS和PED-Shield进行评估,主要采用三个CFD指标来量化分流:流入速率降低、影响区减小和周转时间。使用了7个患者特异性动脉瘤模型。其中包括一个基底动脉尖端,一个椎动脉,两个大脑中动脉和三个颈内动脉动脉瘤。进一步评估孔隙密度和速度分布,以创建一个可靠的比较总结。结果:在所有模型中,exceed Elite FDS均显示出更大的流入率和冲击区减少,周转时间也有所改善。此外,Elite在动脉瘤模型的几乎所有近端(入口)、动脉瘤和远端(出口)点都显示出更高的孔隙密度。结论:与PED-Shield相比,新一代的exceed Elite在所有体外动脉瘤模型中建立了更好的CFD指标。此外,Elite在本研究中评估的几乎所有动脉瘤点都显示出更高的孔隙密度,促进了动脉瘤囊内的血流转移和血栓形成。考虑到这些发现,Elite在提高PED-Shield的咬合率方面具有很大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computational flow dynamics of a novel next-generation flow diverter.

Background: Flow-diverting stents (FDS) have revolutionized the treatment of large, giant, and wide-neck intracranial aneurysms. FDS promote thrombosis and aneurysm occlusion by redirecting blood flow within the parent artery. This method of endovascular therapy has proven efficacious, although leaving room for improvement. This study evaluated computational flow dynamics (CFD) and technical feasibility of the novel Surpass Elite FDS (Elite) in comparison with the Pipeline Embolization Device with Shield Technology (PED-Shield) across seven in vitro aneurysm models.

Methods: Surpass Elite FDS and PED-Shield were assessed primarily with three CFD metrics to quantify flow diversion: inflow rate reduction, impact zone reduction, and turnover time. Seven patient-specific aneurysm models were utilized. These included one basilar tip, one vertebral artery, two middle cerebral artery, and three internal carotid artery aneurysms. Further evaluation of pore densities and velocity profiles was performed to create a robust comparison summary.

Results: Surpass Elite FDS demonstrated greater reduction in inflow rate and impact zone with improved turnover time in all models. Elite additionally displayed higher pore densities at nearly all proximal (inlet), aneurysm, and distal (outlet) points across the aneurysm models.

Conclusions: The next-generation Surpass Elite established better CFD metrics in comparison with PED-Shield in all in vitro aneurysm models evaluated here. Further, Elite demonstrated a higher pore density at nearly all aneurysm points assessed in this study, promoting enhanced flow diversion and thrombosis in the aneurysm sac. Considering these findings, Elite has strong potential to improve on the occlusion rates of PED-Shield.

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来源期刊
CiteScore
9.50
自引率
14.60%
发文量
291
审稿时长
4-8 weeks
期刊介绍: The Journal of NeuroInterventional Surgery (JNIS) is a leading peer review journal for scientific research and literature pertaining to the field of neurointerventional surgery. The journal launch follows growing professional interest in neurointerventional techniques for the treatment of a range of neurological and vascular problems including stroke, aneurysms, brain tumors, and spinal compression.The journal is owned by SNIS and is also the official journal of the Interventional Chapter of the Australian and New Zealand Society of Neuroradiology (ANZSNR), the Canadian Interventional Neuro Group, the Hong Kong Neurological Society (HKNS) and the Neuroradiological Society of Taiwan.
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