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Baohua Ji
bhji@zju.edu.cn
Chinese, English, German
Zhejiang
Zhejiang University
Biomechanics
  • 1993 - BEng: Xi'an Jiaotong University
  • 1998 - PhD: Xi'an Jiaotong University
  • Postdoctoral Research at the Institute of Mechanics, Chinese Academy of Sciences (1998-2001)
  • Postdoctoral Research at the Max Planck Institute for Metals Research, Germany (2001-2004)
  • 2004/08 - 2008/11: Associate Professor, Department of Engineering Mechanics, Tsinghua University
  • 2008/11 - 2018/01: Professor, Department of Mechanics, Beijing Institute of Technology
  • 2018/01 - Present: Professor, Zhejiang University
  • 2006: Beijing Science and Technology Rising Star
  • 2009: Ministry of Education New Century Excellent Talents
  • 2009: Chinese Society of Mechanics Young Scientist Award
  • 2010: National Science Fund for Distinguished Young Scholars
  • 2016: Ministry of Science and Technology Mid-Young Innovative Talents
  • 2017: National 'Ten Thousand Talents' Program
  • 2017: Chinese Society of Mechanics Natural Science Award, Second Prize
Cell and Molecular Mechanics
Biomedical Engineering and Mechanomedicine
Biomaterials Design
  • Some Basic Questions on Mechanosensing in Cell–Substrate Interaction, He, Shijie; Su, Yewang; Ji, Baohua; Gao, Huajian, 2014
  • How Do Cells Produce and Regulate the Driving Force in the Process of Migration?, Zhong, Yuan; Ji, Baohua, 2014
  • Cooperative Contraction Behaviors of a One-Dimensional Cell Chain, Li, Xiaojun; He, Shijie; Xu, Jiayi; Li, Peiliu; Ji, Baohua, 2018
  • Stress Fiber Anisotropy Contributes to Force-Mode Dependent Chromatin Stretching and Gene Upregulation in Living Cells, Wei, Fuxiang; Xu, Xiangyu; Zhang, Cunyu; Liao, Yawen; Ji, Baohua; Wang, Ning, 2020
  • Dissecting Collective Cell Behavior in Polarization and Alignment on Micropatterned Substrates, He, Shijie; Liu, Chenglin; Li, Xiaojun; Ma, Shaopeng; Huo, Bo; Ji, Baohua, 2015
  • A Theoretical Model of Collective Cell Polarization and Alignment, He, Shijie; Green, Yoav; Saeidi, Nima; Li, Xiaojun; Fredberg, Jeffrey J.; Ji, Baohua; Pismen, Len M, 2020
  • Predicted Rupture Force of a Single Molecular Bond Becomes Rate Independent at Ultralow Loading Rates, Li, Dechang; Ji, Baohua, 2014
  • Nano to Micro Structural Hierarchy Is Crucial for Stable Superhydrophobic and Water-Repellent Surfaces, Su, Yewang; Ji, Baohua; Zhang, Kai; Gao, Huajian; Huang, Yonggang; Hwang, Kehchih, 2010
  • Nature’s Design of Hierarchical Superhydrophobic Surfaces of a Water Strider for Low Adhesion and Low-Energy Dissipation, Su, Yewang; Ji, Baohua; Huang, Yonggang; Hwang, Keh-Chih, 2010
Cell Adhesion Cell Migration Cell Polarization Force Propagation Molecular Bond Rupture Silk Β-Sheet Nanocrystallites Nanostructure Hierarchical Structure Superhydrophobic Surfaces Biomechanics

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