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PMID: 37410657 Published · epublish English Observational Study Multicenter Study Journal Article

Computational fluid dynamics for predicting the growth of small unruptured cerebral aneurysms.

Journal of neurosurgery ·Vol. 140 ·No. 1 ·2024-00-01 ·页码 138-143

Tsuji M, Ishida F, Yasuda R, Sato T, Furukawa K, Miura Y, Umeda Y, Toma N, Suzuki H

Abstract

Larger cerebral aneurysms are more likely to enlarge, but even small aneurysms can grow. The aim of this study was to investigate the hemodynamic characteristics regarding the growth of small aneurysms using computational fluid dynamics (CFD). The authors analyzed 185 patients with 215 unruptured cerebral aneurysms with a maximum diameter of 3-5 mm, registered in a multicenter prospective observational study of unruptured aneurysms (Systematic Multicenter Study of Unruptured Cerebral Aneurysms Based on Rheological Technique at Mie) from January 2013 to February 2022. Based on findings on repeated images, aneurysms were divided into a stable group (182 aneurysms) and a growth group (33 aneurysms). The authors developed the high shear concentration ratio (HSCR), in which high wall shear stress (HWSS) was defined as a value of 110% of the time-averaged wall shear stress of the dome. High shear area (HSA) was defined as the area with values above HWSS, and the ratio of the HSA to the surface area of the dome was defined as the HSA ratio (HSAR). They also created the flow concentration ratio (FCR) to measure the concentration of the inflow jet. Multivariate logistic regression analysis was performed to determine morphological variables and hemodynamic parameters that independently characterized the risk of growth. The growth group had a significantly higher projection ratio (0.74 vs 0.67, p = 0.04) and volume-to-ostium area ratio (1.72 vs 1.44, p = 0.02). Regarding the hemodynamic parameters, the growth group had significantly higher HSCR (6.39 vs 4.98, p < 0.001), lower HSAR (0.28 vs 0.33, p < 0.001), and lower FCR (0.61 vs 0.67, p = 0.005). In multivariate analyses, higher HSCR was significantly associated with growth (OR 0.81, 95% CI 7.06 e-1 to 9.36 e-1; p = 0.004). HSCR may be a useful hemodynamic parameter to predict the growth of small unruptured cerebral aneurysms.

Keywords
computational fluid dynamics high shear area ratio small unruptured cerebral aneurysms vascular disorders
MeSH 主题词
Humans Intracranial Aneurysm/diagnostic imaging,complications Hydrodynamics Aneurysm, Ruptured/complications Hemodynamics Stress, Mechanical
作者与单位
共 9 位作者,点击展开单位 / ORCID
Tsuji Masanori
1Department of Neurosurgery, Mie University Graduate School of Medicine, Tsu, Mie, Japan.
Ishida Fujimaro
2Department of Neurosurgery, Mie Chuo Medical Center, National Hospital Organization, Tsu, Mie, Japan.
Yasuda Ryuta
1Department of Neurosurgery, Mie University Graduate School of Medicine, Tsu, Mie, Japan.
Sato Takenori
1Department of Neurosurgery, Mie University Graduate School of Medicine, Tsu, Mie, Japan.
Furukawa Kazuhiro
3Hisai Neurosurgical Clinic, Tsu, Mie, Japan; and.
Miura Yoichi
1Department of Neurosurgery, Mie University Graduate School of Medicine, Tsu, Mie, Japan.
Umeda Yasuyuki
4Department of Neurosurgery, Mie Prefectural General Medical Center, Yokkaichi, Mie, Japan.
Toma Naoki
1Department of Neurosurgery, Mie University Graduate School of Medicine, Tsu, Mie, Japan.
Suzuki Hidenori
1Department of Neurosurgery, Mie University Graduate School of Medicine, Tsu, Mie, Japan.
Article Info
Journal
Journal of neurosurgery
Abbr.
J Neurosurg
ISSN
1933-0693
Published
2024-00-01
电子出版
2023-00-30
页码
138-143
Language
English
Country/Region
United States
NLM ID
0253357
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