An Integrated Framework for Automated Image Segmentation and Personalized Wall Stress Estimation of Abdominal Aortic Aneurysms
Merjulah Roby, Juan C. Restrepo, Deepak K. Shan, Satish C. Muluk, Mark K. Eskandari, Vikram S. Kashyap, Ender A. Finol

TL;DR
This paper introduces an automated system for analyzing abdominal aortic aneurysms using AI and biomechanical modeling to improve clinical decision-making.
Contribution
A novel framework combining deep learning, NURBS, and NEMA for automated AAA segmentation and wall stress estimation.
Findings
A patch-based dilated modified U-Net model segments AAA outer walls efficiently.
NURBS refines segmentation accuracy, and NEMA estimates wall stress biomechanically.
The system processes images in 0.02 milliseconds per frame, offering rapid clinical insights.
Abstract
Abdominal Aortic Aneurysm (AAA) remains a significant public health challenge, with an 82.1% increase in related fatalities from 1990 to 2019. In the United States alone, AAA complications resulted in an estimated 13,640 deaths between 2018 and 2021. In clinical practice, computed tomography angiography (CTA) is the primary imaging modality for monitoring and pre-surgical planning of AAA patients. CTA provides high-resolution vascular imaging, enabling detailed assessments of aneurysm morphology and informing critical clinical decisions. However, manual segmentation of CTA images is labor intensive and time consuming, underscoring the need for automated segmentation algorithms, particularly when feature extraction from clinical images can inform treatment decisions. We propose a framework to automatically segment the outer wall of the abdominal aorta from CTA images and estimate AAA…
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Taxonomy
TopicsAortic aneurysm repair treatments · Cardiac, Anesthesia and Surgical Outcomes
