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Published on: February 23, 2020
Aneurysm growth evaluation and detection: a computer-assisted follow-up MRA analysis
1Faculty of Electrical Engineering, University of Ljubljana, Ljubljana, Slovenia. ziga.bizjak@fe.uni-lj.si.
Computer analysis of intracranial aneurysm (IA) growth using novel imaging features shows high sensitivity for detecting growing aneurysms. These findings aid in timely clinical management of patients with IAs.
Area of Science:
- Medical Imaging
- Computational Anatomy
- Neurosurgery
Background:
- Growing intracranial aneurysms (IAs) risk rupture, necessitating accurate growth detection for treatment.
- Current methods for IA assessment may lack sensitivity in identifying subtle growth patterns.
Purpose of the Study:
- To develop and validate a computer-assisted approach for quantifying IA growth using novel imaging features.
- To assess the performance of these novel features in differentiating stable from growing IAs.
Main Methods:
- Extraction of IA shapes from baseline and follow-up angiographic scans.
- Non-rigid morphing to compute shape deformations and derive novel features: differential volume (dV), surface area (dSA), normalized median deformation path length (dMPL), and integral of cumulative deformation distances (dICDD).
- Classification of IAs by a neuroradiologist into stable (with morphology changes) or growing categories for performance evaluation.
Main Results:
- Three novel features and one cross-sectional feature showed significantly different mean values between stable and growing IA groups (p ).
- The integral of cumulative deformation distances (dICDD) was significantly different across all three assessed IA groups.
- Novel features demonstrated higher sensitivity (0.81-0.90) for detecting growing IAs compared to cross-sectional features (0.05-0.86).
Conclusions:
- The proposed computer-assisted method and novel features show promise as sensitive, imaging-based biomarkers for IA growth detection.
- These findings could enhance clinical decision-making for managing patients with intracranial aneurysms based on follow-up imaging.
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