Zifeng Yang

Affiliations: 
Wright State University, Fairborn, OH, United States 
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"Zifeng Yang"
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Publications

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Yi H, Yang Z, Bramlage LC, et al. (2023) Morphology and Hemodynamics of Cerebral Arteries and Aneurysms in a Rare Pair of Monozygotic Twins. Diagnostics (Basel, Switzerland). 13
Yi H, Yang Z, Bramlage L, et al. (2023) Pathophysiology of intracranial aneurysms in monozygotic twins: A rare case study from hemodynamic perspectives. Computers in Biology and Medicine. 163: 107198
Yi H, Yang Z, Johnson M, et al. (2022) Developing an validated 3D internal carotid artery sidewall aneurysm model. Frontiers in Physiology. 13: 1024590
Padhee S, Johnson M, Yi H, et al. (2022) Machine Learning for Aiding Blood Flow Velocity Estimation Based on Angiography. Bioengineering (Basel, Switzerland). 9
Yi H, Yang Z, Johnson M, et al. (2022) Hemodynamic characteristics in a cerebral aneurysm model using non-Newtonian blood analogues. Physics of Fluids (Woodbury, N.Y. : 1994). 34: 103101
Yi H, Johnson M, Bramlage LC, et al. (2022) Effects of Pulsatile Flow Rate and Shunt Ratio in Bifurcated Distal Arteries on Hemodynamic Characteristics Involved in Two Patient-Specific Internal Carotid Artery Sidewall Aneurysms: A Numerical Study. Bioengineering (Basel, Switzerland). 9
Yu H, Huang GP, Yang Z, et al. (2019) Numerical studies of hemodynamic alterations in pre- and post-stenting cerebral aneurysms using a multiscale modeling. International Journal For Numerical Methods in Biomedical Engineering. e3256
Yu H, Huang GP, Ludwig BR, et al. (2019) An In-Vitro Flow Study Using an Artificial Circle of Willis Model for Validation of an Existing One-Dimensional Numerical Model. Annals of Biomedical Engineering
Yu H, Huang GP, Yang Z, et al. (2018) 1D-3D Multi-scale Computational Modeling for Cerebral Blood Flow with Aneurysms and/or Stenoses. International Journal For Numerical Methods in Biomedical Engineering. e3127
Huang GP, Yu H, Yang Z, et al. (2018) 1D simulation of blood flow characteristics in the circle of Willis using THINkS. Computer Methods in Biomechanics and Biomedical Engineering. 21: 389-397
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