Publications
28
Citations
196
Est. group size
~1
Recurring co-author estimate
Active years
11
Publishing since 2016
Hannah L. Cebull studies diseases of the aorta, particularly type B aortic dissection (a tear in the wall of the main artery from the heart) and aortic aneurysms, using computational modeling, biomechanics, and advanced imaging like 4D flow MRI. Her work aims to understand and predict how the aorta grows, weakens, or responds to surgical treatments such as stent grafting, using patient-specific data and tissue mechanics analysis. This research is aimed at improving clinical decision-making for patients with aortic disease.
Publication output has grown notably over the last decade, rising from sporadic single papers in the late 2010s to a steady 4-6 publications per year since 2023.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Aortic stiffening after thoracic aortic stent grafting: A multi-patient specific computational study
Computer Methods and Programs in Biomedicine · 2026
- Structural Stress as a Predictor of the Rate and Spatial Location of Aortic Growth in Uncomplicated Type B Aortic Dissection
IEEE Transactions on Biomedical Engineering · 2026
- Changes in aortic centerline length and curvature predict aortic diameter growth in chronic type B aortic dissection
JTCVS Open · 2026
- Iliac artery involvement determines optimal therapy in acute uncomplicated type B aortic dissection
JTCVS structural and endovascular. · 2026
- Investigating the role of structural wall stress in aortic growth prognosis in acute uncomplicated type B aortic dissection
Biomechanics and Modeling in Mechanobiology · 2025
- Investigating the role of structural wall stress on aortic growth prognosis in acute uncomplicated type B aortic dissection
Research Square · 2025
- Changes in Aortic Centerline Length and Curvature Predict Aortic Diameter Growth in Chronic Type B Aortic Dissection
medRxiv · 2025
- Abstract 4364855: Linking <i>In Vivo</i> Flap Motion to <i>Ex Vivo</i> Flap Thickness in Type B Aortic Dissection: Acute vs Chronic Insights
Circulation · 2025
- Abstract 4354030: Progressive Flap Thickening Mediated by Wall Shear Stress in Chronic Type B Aortic Dissection
Circulation · 2025
- Growth Prediction of Type B Aortic Dissections Using Wall-Stress-Driven Finite Element Simulation Based on the Unified-Fiber-Distribution (UFD) Model
medRxiv · 2025
- Subjects with carotid webs demonstrate pro-thrombotic hemodynamics compared to subjects with carotid atherosclerosis
Scientific Reports · 2024
- Protective biomechanical and histological changes in the false lumen wall in chronic type B aortic dissection
JTCVS Open · 2024
- The use of 4-dimensional flow magnetic resonance imaging and fluid structure interaction analysis to predict failure of medical therapy in acute uncomplicated type B aortic dissection
JTCVS Techniques · 2024
- Abstract 4146568: Hemodynamics of Acute Type B Aortic Dissections with 4D Flow MRI
Circulation · 2024
- 4D Flow MRI-Derived Hemodynamic Parameters Related to Growth in Acute Type B Aortic Dissections
Proceedings on CD-ROM - International Society for Magnetic Resonance in Medicine. Scientific Meeting and Exhibition/Proceedings of the International Society for Magnetic Resonance in Medicine, Scientific Meeting and Exhibition · 2024
- Circulation×4
- Journal of Biomechanical Engineering×2
- Biomechanics and Modeling in Mechanobiology×2
- JTCVS Open×2
- Research Square×2
- Joel S. Corvera
Medicine · Indiana University
- Mohineesh Kumar
Medicine · Indiana University
- Xiaoyi Teng
Medicine · The Ohio State University
- Hamdy Awad
Medicine · The Ohio State University
- Jordan Stafford
Medicine · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
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