Researcher Page

Kim, Hyun Jin (김현진)
부교수, (기계공학과)
Research Area
Cardiovascular Biomechanics, Multiscale Engineering, Numerical Methods
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    NO Title, Author(s) (Publication Title, Volume Issue, Page, Issue Date)
    Convergence of Phase-Averaged, Transitional Flow in an Abdominal Aortic Aneurysmal Model

    Kim, Hyun Jinresearcher; Lee, Chang Min; Rundfeldt, Hans Christian; et al, JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME, v.145, no.11, pp.1 - 10, 2023-11

    Tissue-growth-based synthetic tree generation and perfusion simulation

    Kim, Hyun Jinresearcher; Rundfeldt, Hans Christian; Lee, Inpyo; et al, BIOMECHANICS AND MODELING IN MECHANOBIOLOGY, v.22, no.3, pp.1095 - 1112, 2023-06

    Effects and Mechanism of Particulate Matter on Tendon Healing Based on Integrated Analysis of DNA Methylation and RNA Sequencing Data in a Rat Model

    Lee, Su-Yel; Lee, Min-Hyeok; Jo, Seong-Kyeong; et al, INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, v.23, no.15, 2022-08

    Myocardial Perfusion Simulation for Coronary Artery Disease: A Coupled Patient-Specific Multiscale Model

    Papamanolis, Lazaros; Kim, Hyun Jinresearcher; Jaquet, Clara; et al, ANNALS OF BIOMEDICAL ENGINEERING, v.49, no.5, pp.1432 - 1447, 2021-05

    Wall Shear Stress and Plaque Vulnerability Computational Fluid Dynamics Analysis Derived From cCTA and OCT

    Toba, Takayoshi; Otake, Hiromasa; Choi, Gilwoo; et al, JACC-CARDIOVASCULAR IMAGING, v.14, no.1, pp.315 - 317, 2021-01

    Physics driven real-time blood flow simulations

    Sankaran, Sethuraman; Lesage, David; Tombropoulos, Rhea; et al, COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, v.364, 2020-06

    Identification of High-Risk Plaques Destined to Cause Acute Coronary Syndrome Using Coronary Computed Tomographic Angiography and Computational Fluid Dynamics

    Lee, Joo Myung; Choi, Gilwoo; Koo, Bon-Kwon; et al, JACC-CARDIOVASCULAR IMAGING, v.12, no.6, pp.1032 - 1043, 2019-06

    Generation of Patient-Specific Cardiac Vascular Networks: A Hybrid Image-Based and Synthetic Geometric Model

    Jaquet, Clara; Najman, Laurent; Talbot, Hugues; et al, IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, v.66, no.4, pp.946 - 955, 2019-04

    Predicting the Physiological Effect of Revascularization in Serially Diseased Coronary Arteries Clinical Validation of a Novel CT Coronary Angiography-Based Technique

    Modi, Bhavik N.; Sankaran, Sethuraman; Kim, Hyun Jinresearcher; et al, CIRCULATION-CARDIOVASCULAR INTERVENTIONS, v.12, no.2, 2019-02

    Lumen boundaries extracted from coronary computed tomography angiography on computed fractional flow reserve (FFRCT): validation with optical coherence tomography

    Uzu, Kenzo; Otake, Hiromasa; Choi, Gilwoo; et al, EUROINTERVENTION, v.14, no.15, pp.E1609 - E1618, 2019-02

    Effect of the ratio of coronary arterial lumen volume to left ventricle myocardial mass derived from coronary CT angiography on fractional flow reserve

    Taylor, Charles A.; Gaur, Sara; Leipsic, Jonathon; et al, JOURNAL OF CARDIOVASCULAR COMPUTED TOMOGRAPHY, v.11, no.6, pp.429 - 436, 2017-11

    Impact of Longitudinal Lesion Geometry on Location of Plaque Rupture and Clinical Presentations

    Lee, Joo Myung; Choi, Gilwoo; Hwang, Doyeon; et al, JACC-CARDIOVASCULAR IMAGING, v.10, no.6, pp.677 - 688, 2017-06

    Computational fluid dynamic measures of wall shear stress are related to coronary lesion characteristics

    Park, Jun-Bean; Choi, Gilwoo; Chun, Eun Ju; et al, HEART, v.102, no.20, pp.1655 - 1661, 2016-10

    Uncertainty quantification in coronary blood flow simulations: Impact of geometry, boundary conditions and blood viscosity

    Sankaran, Sethuraman; Kim, Hyun Jinresearcher; Choi, Gilwoo; et al, JOURNAL OF BIOMECHANICS, v.49, no.12, pp.2540 - 2547, 2016-08

    Coronary Artery Axial Plaque Stress and its Relationship With Lesion Geometry Application of Computational Fluid Dynamics to Coronary CT Angiography

    Choi, Gilwoo; Lee, Joo Myung; Kim, Hyun Jinresearcher; et al, JACC-CARDIOVASCULAR IMAGING, v.8, no.10, pp.1156 - 1166, 2015-10

    Computational Simulations for Aortic Coarctation: Representative Results From a Sampling of Patients

    LaDisa, John F., Jr.; Figueroa, C. Alberto; Vignon-Clementel, Irene E.; et al, JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME, v.133, no.9, 2011-09

    Patient-Specific Modeling of Blood Flow and Pressure in Human Coronary Arteries

    Kim, Hyun Jinresearcher; Vignon-Clementel, I. E.; Coogan, J. S.; et al, ANNALS OF BIOMEDICAL ENGINEERING, v.38, no.10, pp.3195 - 3209, 2010-10

    Incorporating Autoregulatory Mechanisms of the Cardiovascular System in Three-Dimensional Finite Element Models of Arterial Blood Flow

    Kim, Hyun Jinresearcher; Jansen, K. E.; Taylor, C. A., ANNALS OF BIOMEDICAL ENGINEERING, v.38, no.7, pp.2314 - 2330, 2010-07

    Developing computational methods for three-dimensional finite element simulations of coronary blood flow

    Kim, Hyun Jinresearcher; Vignon-Clementel, I. E.; Figueroa, C. A.; et al, FINITE ELEMENTS IN ANALYSIS AND DESIGN, v.46, no.6, pp.514 - 525, 2010-06

    Cardiovascular flow simulation at extreme scale

    Zhou, Min; Sahni, Onkar; Kim, Hyun Jinresearcher; et al, COMPUTATIONAL MECHANICS, v.46, no.1, pp.71 - 82, 2010-06

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