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Published on: January 17, 2013
Increased tortuosity of basilar artery might be associated with higher risk of aneurysm development
Kornelia M Kliś1,2,3, Roger M Krzyżewski4,5, Borys M Kwinta3,6
1Faculty of Medicine, Jagiellonian University Medical College, Kraków, Poland.
Insights
Increased basilar artery (BA) tortuosity is linked to a higher risk of developing BA aneurysms. Metrics like sum of angle metrics (SOAM) and triangular index (TI) independently predict aneurysm development.
Area of Science:
- Neuroscience
- Medical Imaging
- Vascular Biology
Background:
- Basilar artery (BA) aneurysms are a significant cause of cerebrovascular disease.
- Understanding the anatomical factors contributing to BA aneurysm formation is crucial for risk stratification.
Purpose of the Study:
- To investigate the relationship between basilar artery tortuosity and the presence of aneurysms.
- To identify specific tortuosity metrics that are predictive of BA aneurysm development.
Main Methods:
- Retrospective analysis of 71 patients with BA aneurysms and 71 matched controls.
- Calculation of various tortuosity metrics including sum of angle metrics (SOAM), triangular index (TI), and product of angle distance (PAD).
- Logistic regression analysis to determine independent predictors of BA aneurysm.
Main Results:
- Patients with BA aneurysms exhibited significantly higher SOAM, PAD, TI, and ICM compared to controls.
- SOAM and TI were identified as independent predictors of BA aneurysm risk after adjusting for confounders.
- SOAM and PAD showed a significant positive correlation with patient age.
Conclusions:
- Increased basilar artery tortuosity is associated with an elevated risk of aneurysm development.
- Specific quantitative measures of tortuosity, SOAM and TI, are independently linked to BA aneurysm formation.
- The findings suggest that tortuosity assessment may aid in identifying individuals at higher risk for BA aneurysms.
Objectives:
We analysed tortuosity of basilar artery (BA) to determine its relationship with the presence of aneurysm.
Methods:
We retrospectively analysed 71 patients with BA aneurysms along with 71 age- and risk factors-matched control patients without BA aneurysm. From patients' medical records, we obtained their history including previous and current diseases and medications. For each patient, we calculated relative length (RL), sum of angle metrics (SOAM), triangular index (TI), product of angle distance (PAD) and inflexion count metrics (ICM). We used t-test and Mann-Whitney U test for continuous variables and χ2 test for dichotomised variables. To find independent predictors of BA aneurysm, we employed logistic regression analysis.
Results:
We found significant positive correlation between age and SOAM (R = 0.195, p = 0.02) and PAD (R = 0.199, p = 0.018). Our study also showed that patients with BA aneurysm had significantly higher SOAM (0.21 ± 0.16 vs. 0.11 ± 0.08; p < 0.01), PAD (0.30 ± 0.19 vs. 0.18 ± 0.11; p < 0.01), TI (0.23 ± 0.23 vs. 0.10 ± 0.16; p < 0.01) and ICM (0.20 ± 0.16 vs. 0.15 ± 0.11; p = 0.045). In multivariate logistic regression analysis, after adjustment for all possible confounders, SOAM (OR = 1.086; 95% CI 1.046-1.136; p < 0.01) and TI (OR = 1.004; 95%C: 1.002-1.006; p < 0.01) remained independently associated with higher risk of BA aneurysm.
Conclusions:
Increased tortuosity of BA is associated with higher risk of its aneurysm development.
Key Points:
• Basilar artery sum of angle metrics and product of angle distance are correlated with age. • Basilar artery tortuosity is independently associated with higher risk of its aneurysm development. • Basilar artery tortuosity is positively correlated with its diameter and bifurcation angle.
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