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PMID: 35758075 Published · ppublish rus Journal Article

[Mathematical modeling of high-flow extra-intracranial bypass in the treatment of a complex cerebral aneurysm].

Zhurnal voprosy neirokhirurgii imeni N. N. Burdenko ·Vol. 86 ·No. 3 ·2022-00-00 ·页码 23-32

Blagosklonova ER, Dolotova DD, Arkhipov IV, Polunina NA, Stepanov VN, Krylov VV, Gavrilov AV

Abstract

Intracranial aneurysms (IAs) pose a high risk of spontaneous subarachnoid hemorrhage. In the most complex cases, the only way to exclude the aneurysm from the circulation is to perform a high-flow extracranial-to-intracranial bypass, thus creating a new bloodstream. This avoids severe ischemic complications; however, it requires careful consideration of individual anatomy and hemodynamic parameters. Computational fluid dynamics (CFD) can be of great help in planning such a surgery by creating 3D patient-specific models of cerebral circulation. Assessment of the perspectivity of high-flow extracranial-to-intracranial bypass planning using computational modeling. In this research work, we have applied the CFD methods to a patient with a giant thrombosed IA of the internal carotid artery (ICA). Preoperative CTA images and Gamma Multivox workstation were used to create a 3D model with current geometry and three additional models: Normal anatomy (no IA), Occlusion (with ligated ICA), Virtual bypass (with bypass and ligated ICA). The postoperative data were also available. Boundary conditions were based on PC-MRI measurements. Calculation of hemodynamics was conducted with a finite element package ANSYS Workbench 19. The results demonstrated an increase in the blood flow on the affected side by more than 70% after the virtual surgery and uniformity of flow distribution between the affected and contralateral sides, indicating that the treatment is likely to be efficient. Later, postoperative data confirmed that. The study showed that virtual preoperative CFD modeling could significantly simplify and improve surgical planning.

Keywords
EC-IC bypass bypass surgery cerebral circulation complex aneurysms computational fluid dynamics hemodynamic analysis intracranial aneurysms preoperative planning
MeSH 主题词
Carotid Artery, Internal/surgery Cerebral Revascularization/methods Cerebrovascular Circulation Humans Intracranial Aneurysm/diagnostic imaging,surgery Neurosurgical Procedures/methods Subarachnoid Hemorrhage/diagnostic imaging,surgery
作者与单位
共 7 位作者,点击展开单位 / ORCID
Blagosklonova E R ORCID
Gammamed-Soft LLC, Moscow, Russia.
Dolotova D D ORCID
Gammamed-Soft LLC, Moscow, Russia. | Veltischev Research Clinical Institute of Pediatrics - Pirogov Russian National Research Medical University, Moscow, Russia.
Arkhipov I V ORCID
Gammamed-Soft LLC, Moscow, Russia. | Lomonosov Moscow State University, Moscow, Russia.
Polunina N A ORCID
Evdokimov Moscow State University of Medicine and Dentistry, Moscow, Russia. | Sklifosovsky Research Institute for Emergency Care, Moscow, Russia.
Stepanov V N ORCID
Sklifosovsky Research Institute for Emergency Care, Moscow, Russia.
Krylov V V ORCID
Evdokimov Moscow State University of Medicine and Dentistry, Moscow, Russia. | Sklifosovsky Research Institute for Emergency Care, Moscow, Russia.
Gavrilov A V ORCID
Gammamed-Soft LLC, Moscow, Russia. | Lomonosov Moscow State University, Moscow, Russia.
Article Info
Journal
Zhurnal voprosy neirokhirurgii imeni N. N. Burdenko
Abbr.
Zh Vopr Neirokhir Im N N Burdenko
ISSN
0042-8817
Published
2022-00-00
页码
23-32
Language
rus
Country/Region
Russia (Federation)
NLM ID
7809757
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