Under Review

  • Y. Choi, C.M. Lee, K. Lee, M. Lee, S.-H. Kim, Y.-S. Yoon, H.J. Kim Computational investigation of intermittent pneumatic compression operating parameters and tissue mechanics in lower-limb venous hemodynamics Computers in Biology and Medicine (Under Review)
  • W. Choi, B.-K. Koo, J.-K. Han, I. Lee, H.J. Kim Effects of pulsatile flow on fractional flow reserve assessed using a reduced-order model Annals of Biomedical Engineering (Under Review)

2026

  • H.J. Kim, C.M. Lee, Y. Choi, H. Chang, K.-H. Jung Multiscale modeling of posture-dependent cerebrovascular hemodynamics with autoregulatory coupling Computers in Biology and Medicine, 203:111502
  • N. Moreaux, C.M. Lee, B.-K. Koo, K.-H. Jung, J.-K. Han, H. Chang, H.J. Kim Computational Modeling of Collateral Circulation and Arteriolar Vasodilation in Ischemic Tissue Perfusion Annals of Biomedical Engineering
  • C.M. Lee, Y. Choi, H.J. Kim Efficient multi-fidelity fluid-structure interaction modeling for pulsatile blood flow in deformable biological tissues Annals of Biomedical Engineering

2025

  • C.H. Lee, S.-K. Jeong, H.J. Kim, R.S. Rosenson, W. Yang, K.H. Jung Arteriopathic Effects of Hypertension by Signal Intensity Gradient from Time-of-Flight Magnetic Resonance Angiography Clinical Neuroradiology
  • C.-H. Lee, S.-K. Jeong, H.J. Kim, R.S. Rosenson, W. Yang, K.H. Jung Association of Carotid Artery Stenosis with Cerebral Artery Signal Intensity Gradient on Time-of-Flight Magnetic Resonance Angiography Frontiers in Neurology, 16:1576655
  • W. Choi, I. Lee, H.J. Kim Developing a reduced order model for pulsatile blood flow simulations using minimal three-dimensional simulation data Computer Methods and Programs in Biomedicine, 271:108994
  • C.M. Lee, H.C. Rundfeldt, K.-H. Jung, H. Chang, H.J. Kim Physiologic model of the cerebrovascular system using supply and demand between arteries and tissues Scientific Reports, 15:27785
  • J.P. Dmochowski, L. Cardoso, N. Khadka, K. Lee, S. Kim, K. Kim, H. Chun, S. Choo, H.J. Kim, A.D. Shereen, M. Bikson Assessing the Effect of Automated Thermo-Mechanical Therapy on Abdominal Blood Flow With Magnetic Resonance Imaging NMR in Biomedicine, 38(5):e70024

2024

  • D. Kwak, Y. Im, H. Nam, U. Nam, S. Kim, W. Kim, H.J. Kim, J. Park, J.S. Jeon Analyzing the effects of helical flow in blood vessels using acoustofluidic-based dynamic flow generator Acta Biomaterialia
  • H.C. Rundfeldt, C.M. Lee, H. Lee, K.-H. Jung, H. Chang, H.J. Kim Cerebral Perfusion Simulation using Realistically Generated Synthetic Trees for Healthy and Stroke Patients Computer Methods and Programs in Biomedicine, 244:107956

2023

  • H.J. Kim, C.M. Lee, H.C. Rundfeldt, I. Lee, S. Lee, K. Jansen Convergence of phase-averaged, transitional flow in an abdominal aortic aneurysmal model Journal of Biomechanical Engineering, 45(11):111007
  • H.J. Kim, H.C. Rundfeldt, I. Lee, S. Lee Tissue-growth based Synthetic Tree Generation and Perfusion Simulation Biomechanics and Modeling in Mechanobiology, 22:1095–1112

2022

  • S.Y. Lee, M.H. Lee, S.K. Jo, I.H. Yoo, B.E. Sarankhuu, H.J. Kim, Y.E. Kang, S.E. Lee, T.Y. Kim, M.H. Park, C.S. Lee, S.Y. Han, J.H. Moon, J.Y. Jung, G.L. Hong, N.J. Yoo, E.S. Yoon, J.K. Choi, H.R. Won, J.W. Son, J.H. Song Effects and Mechanism of Particulate Matter on Tendon Healing Based on Integrated Analysis of DNA Methylation and RNA Sequencing Data in a Rat Model International Journal of Molecular Sciences, 23(15):8170

2021

  • L. Papamanolis, H.J. Kim, C. Jaquet, L. Najman, H. Talbot, L. Grady, M. Schaap, D. Spain, I.E. Vignon-Clementel, C.A. Taylor Myocardial perfusion simulation for coronary artery disease: a coupled patient-specific multiscale model Annals of Biomedical Engineering, 49(5):1432-1447
  • T. Toba, H. Otake, G. Choi, H.J. Kim, H. Onishi, Y. Sugizaki, R. Takeshige, A. Nagasawa, Y. Nagano, Y. Tsukiyama, K. Yanaka, H. Yamamoto, H. Kawamori, S. Mori, M. Kawata, C.A. Taylor, K. Hirata Wall shear stress and plaque vulnerability: Computational fluid dynamics analysis derived from cCTA and OCT JACC: Cardiovascular Imaging, 14(1):315-317

2020

  • S. Sankaran, D. Lesage, R. Tombropoulos, N. Xiao, H.J. Kim, D. Spain, M. Schaap, C.A. Taylor Physics driven reduced order model for real time blood flow simulations Computer Methods in Applied Mechanics and Engineering, 364:112963

2019

  • K. Uzu, H. Otake, G. Choi, T. Toba, H.J. Kim, A. Roy, M. Schaap, L. Grady, M. Kawata, T. Shinke Lumen boundaries extracted from coronary computed tomography angiography on computed fractional flow reserve (FFRCT): validation with optical coherence tomography EuroIntervention, 14(15):e1609-e1618
  • B.N. Modi, S. Sankaran, H.J. Kim, H. Ellis, C. Rogers, C.A. Taylor, R. Rajani, D. Perera Predicting the Physiological Effect of Revascularization in Serially Diseased Coronary Arteries: Clinical Validation of a Novel CT Coronary Angiography–Based Technique Circulation: Cardiovascular Interventions, 12(2):e007577
  • J.M. Lee, G. Choi, B.K. Koo, D.Y. Hwang, J.H. Park, Z. Zhang, K.J. Kim, Y. Tong, H.J. Kim, L. Grady Identification of high-risk plaques destined to cause acute coronary syndrome using coronary computed tomographic angiography and computational fluid dynamics JACC: Cardiovascular Imaging, 12(6):1032-1043

2018

  • C. Jaquet, L. Najman, H. Talbot, L. Grady, M. Schaap, D. Spain, H.J. Kim, I.E. Vignon-Clementel, C.A. Taylor Generation of patient-specific cardiac vascular networks: a hybrid image-based and synthetic geometric model IEEE Transactions on Biomedical Engineering, 66(4):946-955

2017

  • C.A. Taylor, S. Gaur, J. Leipsic, S. Achenbach, D.S. Berman, J.M. Jensen, D. Dey, H.E. Bøtker, H.J. Kim, S. Khem Effect of the ratio of coronary arterial lumen volume to left ventricle myocardial mass derived from coronary CT angiography on fractional flow reserve Journal of Cardiovascular Computed Tomography, 11(6):429-436
  • J.M. Lee, G. Choi, D.Y. Hwang, J.H. Park, H.J. Kim, J.H. Doh, C.W. Nam, S.H. Na, E.S. Shin, C.A. Taylor Impact of longitudinal lesion geometry on location of plaque rupture and clinical presentations JACC: Cardiovascular Imaging, 10(6):677-688

2016

  • S. Sankaran, H.J. Kim, G. Choi, C.A. Taylor Uncertainty quantification in coronary blood flow simulations: impact of geometry, boundary conditions and blood viscosity Journal of Biomechanics, 49(12):2540-2547
  • J.B. Park, G. Choi, E.J. Chun, H.J. Kim, J.H. Park, J.H. Jung, M.H. Lee, H. Otake, J.H. Doh, C.W. Nam, C.A. Taylor Computational fluid dynamic measures of wall shear stress are related to coronary lesion characteristics Heart, 102(20):1655-1661

2015

  • G. Choi, J.M. Lee, H.J. Kim, J.B. Park, S. Sankaran, H. Otake, J.H. Doh, C.W. Nam, E.S. Shin, C.A. Taylor Coronary artery axial plaque stress and its relationship with lesion geometry: application of computational fluid dynamics to coronary CT angiography JACC: Cardiovascular Imaging, 8(10):1156-1166

2011

  • J.F. LaDisa, C.A. Figueroa, I.E. Vignon-Clementel, H.J. Kim, N. Xiao, L.M. Ellwein, F.P. Chan, J.A. Feinstein, C.A. Taylor Computational simulations for aortic coarctation: representative results from a sampling of patients Journal of Biomechanical Engineering, 133(9)

2010

  • H.J. Kim, I.E. Vignon-Clementel, C.A. Figueroa, K.E. Jansen, C.A. Taylor Developing computational methods for three-dimensional finite element simulations of coronary blood flow Finite Elements in Analysis and Design, 46(6):514-525
  • H.J. Kim, I.E. Vignon-Clementel, J.S. Coogan, C.A. Figueroa, K.E. Jansen, C.A. Taylor Patient-specific modeling of blood flow and pressure in human coronary arteries Annals of Biomedical Engineering, 38(10):3195-3209
  • H.J. Kim, K.E. Jansen, C.A. Taylor Incorporating autoregulatory mechanisms of the cardiovascular system in three-dimensional finite element models of arterial blood flow Annals of Biomedical Engineering, 38(7):2314-2330
  • M. Zhou, O. Sahni, H.J. Kim, C.A. Figueroa, C.A. Taylor, M.S. Shephard, K.E. Jansen Cardiovascular flow simulation at extreme scale Computational Mechanics, 46(1):71-82

2009

  • H.J. Kim, I.E. Vignon-Clementel, C.A. Figueroa, J.F. LaDisa, K.E. Jansen, J.A. Feinstein, C.A. Taylor On coupling a lumped parameter heart model and a three-dimensional finite element aorta model Annals of Biomedical Engineering, 37(11):2153-2169
  • H.J. Kim, C.A. Figueroa, T.J.R. Hughes, K.E. Jansen, C.A. Taylor Augmented Lagrangian method for constraining the shape of velocity profiles at outlet boundaries for three-dimensional finite element simulations of blood flow Computer Methods in Applied Mechanics and Engineering, 198(45-46):3551-3566

2006

  • J.J. Yeung, H.J. Kim, T.A. Abbruzzese, I.E. Vignon-Clementel, M.T. Draney-Blomme, K.K. Yeung, I. Perkash, R.J. Herfkens, C.A. Taylor, R.L. Dalman Aortoiliac hemodynamic and morphologic adaptation to chronic spinal cord injury Journal of Vascular Surgery, 44(6):1254-1265