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A Novel Scoring System for Rupture Risk Stratification of Intracranial Aneurysms: A Hemodynamic and Morphological
Pengjun Jiang1,2,3, Qingyuan Liu1,2,3, Jun Wu1,2,3
1Department of Neurosurgery, Beijing Tiantan Hospital, Capital Medical University, Beijing, China.
Insights
This study identified key morphological and hemodynamic factors for intracranial aneurysm (IA) rupture. A new scoring system, the Intracranial Aneurysm Rupture Score (IARS), demonstrates higher accuracy in predicting IA rupture compared to existing methods.
Area of Science:
- Neurosurgery
- Medical Imaging
- Biomedical Engineering
Background:
- Intracranial aneurysms (IAs) pose a significant risk of rupture, necessitating accurate risk stratification for clinical decision-making.
- Identifying reliable morphological and hemodynamic risk factors is crucial for predicting IA rupture and guiding treatment strategies.
Purpose of the Study:
- To investigate morphological and hemodynamic risk factors associated with intracranial aneurysm rupture.
- To develop and validate a novel scoring system, the Intracranial Aneurysm Rupture Score (IARS), for stratifying IA rupture risk.
Main Methods:
- Retrospective analysis of single IA cases from January 2012 to January 2018.
- Utilized high-resolution CTA for morphological parameters and computational fluid dynamics (CFDs) for hemodynamic parameters.
- Developed the IARS using significant risk factors and compared its accuracy against the Rupture Resemblance Score (RRS) through logistic regression and follow-up studies.
Main Results:
- Significant differences in aneurysm length, height, aspect ratio, size ratio (SR), deviated angle (DA), normalized average wall shear stress (NWSSa), wall shear stress gradient (WSSG), low shear area ratio (LSAR), and oscillatory shear index (OSI) were observed.
- SR, DA, NWSSa, LSAR, and OSI were identified as independent risk factors for IA rupture.
- The IARS demonstrated superior discriminating accuracy (AUC 0.81) compared to the RRS (AUC 0.77) and showed higher accuracy in predicting rupture during follow-up (19.2% vs. 12.3%).
Conclusions:
- Morphological factors (SR, DA) and hemodynamic factors (LSAR, OSI) are independent predictors of intracranial aneurysm rupture.
- The novel Intracranial Aneurysm Rupture Score (IARS) offers improved accuracy in discriminating IA rupture risk compared to the RRS, aiding clinical decision-making.
Abstract:
Objective: The aim of the present study is to investigate the potential morphological and hemodynamic risk factors related to intracranial aneurysms (IAs) rupture and establish a system to stratify the risk of IAs rupture to help the clinical decision-making. Methods: Patients admitted to our hospital for single-IAs were selected from January 2012 and January 2018. A propensity score matching was conducted to match patients. The morphological parameters were obtained from high solution CTA images, and the hemodynamic parameters were obtained in accordance with the outcomes of computational fluid dynamics (CFDs) simulation. Differences in the morphologic and hemodynamic parameters were compared. The significant parameters were selected to establish a novel scoring system (Intracranial Aneurysm Rupture Score, IARS). The comparison was drawn between the discriminating accuracy of IARS and the Rupture Resemblance Score (RRS) system to verify the value of IARS. Then, a group of patients with unruptured IAs was stratified into the high risk and low risk groups by IARS and RRS system separately and was followed up for 18-27 months to verify the value of IARS. The outcome of different stratifications was compared. Results: The matching process yielded 167 patients in each group. Differences of statistical significance were found in aneurysm length (p = 0.001), perpendicular height (H) (p < 0.001), aspect ratio (AR) (p < 0.001), size ratio (SR) (p < 0.001), deviated angle (DA) (p < 0.001), normalized average wall shear stress (NWSSa) (p < 0.001), wall shear stress gradient (WSSG) (p < 0.001), low shear area ratio (LSAR) (p = 0.01), and oscillatory shear index (OSI) (p = 0.01). Logistic regression analysis further demonstrated that SR, DA, NWSSa, LSAR, and OSI were the independent risk factors of IAs rupture. SR, DA, LSAR, and OSI were finally selected to establish the IARS. Our present IARS showed a higher discriminating value (AUC 0.81 vs. 0.77) in comparison with the RRS (SR, NWSSa, and OSI). After follow-up, seven patients were subject to IAs rupture. 5/26 in high risk group stratified by IARS, yet 7/57 in high risk group stratified by RRS. The accuracy of IARS was further verified (19.2% vs. 12.3%, AUC for the IARS and the RRS was 0.723 and 0.673, respectively). Conclusion: SR, DA, NWSSa, LSAR, and OSI were considered the independent risk factors of IAs rupture. Our novel IARS showed higher accuracy in discriminating IA rupture in comparison with RRS.
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