Yuan Feng
{'en': 'Email: fengyuan [AT] sjtu.edu.cn, Phone: 18625085336', 'zh': '电子邮件:fengyuan [AT] sjtu.edu.cn, 电话:18625085336', 'de': 'E-Mail: fengyuan [AT] sjtu.edu.cn, Telefon: 18625085336'}
English, Chinese
Shanghai
Shanghai Jiao Tong University
Biomedical Engineering
  • Ph.D., Mechanical Engineering, Washington University in St. Louis, 2012
  • M.S., Mechanical Engineering, Washington University in St. Louis, 2011
  • B.S., Mechanical and Electronic Engineering, Harbin Institute of Technology, 2008
  • B.S., Thermal Energy and Power Engineering, Harbin Institute of Technology, 2006
  • 2018 - Present: Associate Professor, Shanghai Jiao Tong University, School of Biomedical Engineering
  • 2016 - 2018: Associate Professor, Suzhou University, Institute of Radiological and Interdisciplinary Sciences
  • 2014 - 2016: Associate Professor, Suzhou University, School of Mechanical and Electrical Engineering
  • 2014: Postdoctoral Researcher, The University of Texas at Austin
  • 2013: Postdoctoral Researcher, Washington University in St. Louis
  • ASME Richard Skalak Best Paper Award, 2013
Brain Biomechanics
Magnetic Resonance Elastography
Magnetic Resonance Interventional Imaging
  • Evaluation of the Laser-Induced Thermotherapy Treatment Effect of Breast Cancer Based on Tissue Viscosity, Yuan Feng, 2018
  • Viscoelastic characterization of injured brain tissue after controlled cortical impact (CCI) using a, Yuan Feng, 2020
  • Measurement of viscoelastic properties of injured mouse brain after controlled cortical impact, Yuan Feng, 2020
  • A machine learning approach for magnetic resonance image–based mouse brain modeling and fast computation, Yuan Feng, 2020
  • A feature-based convolutional neural network for reconstruction of interventional MRI, Yuan Feng, 2019
  • Magnetic Resonance Image-Based Modeling for Neurosurgical Interventions, Yuan Feng, 2019
  • A preliminary study of the local biomechanical environment of liver tumors in vivo, Yuan Feng, 2019
  • Regional biomechanical imaging of liver cancer cells, Yuan Feng, 2019
  • SIMULATION OF MOUSE BRAIN TISSUE UNDER CONTROLLED CORTICAL IMPACT, Yuan Feng, 2019
  • A multi-purpose electromagnetic actuator for magnetic resonance elastography, Yuan Feng, 2018
  • Characterizing viscoelastic properties of breast cancer tissue from 4T1 and SKBR3 cell lines with in, Yuan Feng, 2018
  • A Novel Small-Specimen Planar Biaxial Testing System with Full In-Plane Deformation Control, Yuan Feng, 2017
  • Biodegradable Nanoagents with Short Biological Half-Life for SPECT/PAI/MRI Multimodality Imaging and, Yuan Feng, 2017
  • On the accuracy and fitting of transversely isotropic material models, Yuan Feng, 2017
  • A longitudinal study of the mechanical properties of injured brain tissue in a mouse model, Yuan Feng, 2017
  • A computational study of invariant I5 in a nearly incompressible transversely isotropic model for wh, Yuan Feng, 2017
  • An adaptive Fuzzy C-means method utilizing neighboring information for breast tumor segmentation in, Yuan Feng, 2017
  • A longitudinal study of the effects of environmental pH on the mechanical properties of Aspergillus, Yuan Feng, 2017
  • Characterizing white matter tissue in large strain via asymmetric indentation and inverse finite element, Yuan Feng, 2016
  • A Longitudinal Magnetic Resonance Elastography Study of Murine Brain Tumors Following Radiation Therapy, Yuan Feng, 2016
  • A modified fuzzy C-means method for segmenting MR images using non-local information, Yuan Feng, 2016
  • A comparative study of automatic image segmentation algorithms for target tracking in MR-IGRT, Yuan Feng, 2016
  • Automatic Estimation of elastic material parameters of a transversely isotropic material using asymmetric, Yuan Feng, 2015
  • A Generalized Method for the Analysis of Planar Biaxial Mechanical Data, Yuan Feng, 2015
  • MRE detection of heterogeneity using quantitative measures of residual error and uncertainty, Yuan Feng, 2014
  • Measurements of mechanical anisotropy in brain tissue and implications for transversely isotropic material, Yuan Feng, 2013
  • Viscoelastic Properties of the Ferret Brain Measured In Vivo at Multiple Frequencies by Magnetic Resonance, Yuan Feng, 2012
  • Identification of A Transversely Isotropic Material Model for White Matter In The Brain, Yuan Feng, 2012
  • Shear wave propagation of the ferret brain at multiple frequencies in vivo, Yuan Feng, 2012
  • Elastic Characterization of Transversely Isotropic Soft Materials by Dynamic Shear and Asymmetric Indentation, Yuan Feng, 2012
  • Principal Component Analysis of Dynamic Relative Displacement Fields Estimated from MR Images, Yuan Feng, 2011
  • Measurement of Brain Biomechanics in Vivo by Magnetic Resonance Imaging, Yuan Feng, 2010
  • Principal Components of Brain Deformation in Response to Skull Acceleration: The Roles of Sliding and, Yuan Feng, 2010
  • Relative brain displacement and deformation during constrained mild frontal head impact, Yuan Feng, 2010
  • Structure Optimization of the Endoscopic Robot Ciliary Leg Based on Dimensional Analysis, Yuan Feng, 2007
Biomechanics Brain Mri Elastography Interventional Imaging Mechanical Properties Modeling Simulation Tissue

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