Publications
21
Citations
661
Est. group size
—
Recurring co-author estimate
Active years
16
Publishing since 2011
Hyeondong Yang's research focuses on understanding and predicting cerebral (brain) aneurysms using computational modeling, medical imaging, and engineering techniques. Much of the work involves computational fluid dynamics simulations of blood flow to study how factors like wall shear stress, vessel shape, and blood vessel anatomy contribute to aneurysm formation and rupture risk, alongside using machine learning and 3D-printed patient-specific models to improve prediction and treatment planning. Some earlier work also involved developing flexible pressure sensors using engineered polymer materials.
Publication output has been fairly steady over the last several years, averaging about 2-3 papers annually with no clear increasing or decreasing trend, following a gap with no recorded publications before 2020.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Correlation between computational fluid dynamics-derived low wall shear stress and vessel wall enhancement on high-resolution MR vessel wall imaging in intracranial aneurysms
European Radiology · 2026
- Reply to the Letter to the Editor: Correlation between computational fluid dynamics-derived low wall shear stress and vessel wall enhancement on high-resolution MR vessel wall imaging in intracranial aneurysms
European Radiology · 2026
- Discrepancy in vessel tortuosity measurements of anterior circulation cerebral artery between digital subtraction angiography and magnetic resonance angiography
Journal of Cerebrovascular and Endovascular Neurosurgery · 2025
- Novel morphological indexes for quantitative evaluation of cerebral aneurysm irregularity
Scientific Reports · 2025
- Influence of circle of Willis modeling on hemodynamic parameters in anterior communicating artery aneurysms and recommendations for model selection
Scientific Reports · 2024
- Quantitative analysis of hemodynamic changes induced by the discrepancy between the sizes of the flow diverter and parent artery
Scientific Reports · 2024
- Influence of blood viscosity models and boundary conditions on the computation of hemodynamic parameters in cerebral aneurysms using computational fluid dynamics
Acta Neurochirurgica · 2023
- Investigation of paraclinoid aneurysm formation by comparing the combined influence of hemodynamic parameters between aneurysmal and non-aneurysmal arteries
Journal of Cerebral Blood Flow & Metabolism · 2023
- 3D‐Printed Patient‐Specific Circles of Willis with an Intracranial Aneurysm and their Application to Neurointerventional Endovascular Simulation
Advanced Materials Technologies · 2023
- 3D‐Printed Patient‐Specific Circles of Willis with an Intracranial Aneurysm and their Application to Neurointerventional Endovascular Simulation (Adv. Mater. Technol. 15/2023)
Advanced Materials Technologies · 2023
- Rupture risk prediction of cerebral aneurysms using a novel convolutional neural network-based deep learning model
Journal of NeuroInterventional Surgery · 2022
- New morphological parameter for intracranial aneurysms and rupture risk prediction based on artificial neural networks
Journal of NeuroInterventional Surgery · 2022
- Fabrication of hierarchically porous structured PDMS composites and their application as a flexible capacitive pressure sensor
Composites Part B Engineering · 2021
- Computational Study of Hemodynamic Changes Induced by Overlapping and Compacting of Stents and Flow Diverter in Cerebral Aneurysms
Frontiers in Neurology · 2021
- The quantitative comparison between high wall shear stress and high strain in the formation of paraclinoid aneurysms
Scientific Reports · 2021
- Scientific Reports×5
- Journal of NeuroInterventional Surgery×2
- European Radiology×2
- Advanced Materials Technologies×2
- Composites Part B Engineering×1
- Andrew DeNardo
Medicine · Indiana University
- Rami James N. Aoun
Medicine · The Ohio State University
- Vitaliy L. Rayz
Medicine · Purdue University West Lafayette
- Hera A. Kamdar
Medicine · The Ohio State University
- Bradley N. Bohnstedt
Medicine · Indiana 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.
Claim or correct this profile