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Scot H. Merrick, M.D.

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Division of Adult Cardiothoracic Surgery

 

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Adult Cardiothoracic »  Faculty »  Liang Ge, Ph.D.
Liang Ge, Ph.D. -

Faculty Biography

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Liang Ge, Ph.D.

Assistant Adjunct Professor

Contact Information

4150 Clement Street
San Francisco, CA    94121
Tel: 415-750-2057
Fax: 415-750-2181

Education

  • Tsinghua University, Beijing, China-BE, 1996
  • Tsinghua University, Beijing, China-ME, 1999

 

Residencies

Fellowships

Postdoctoral Training

  • Georgia Institute of Technology, Atlanta, GA, PhD, 2004
  • Georgia Institute of Technology, Atlanta, GA, Postdoc, 2005

Board Certification

Program Affiliations

Clinical Expertise

Research Interests

  • Cardiovascular Fluid Dynamics
  • Fluid/structure interaction
  • Multi-scale simulation
  • Patient specific surgical planning
  • Cardiovascular diseases and hemodynamics
  • Computational Fluid Dynamics and parallel computation

Website LInks

Selected Publications

1.                 Borazjani, I., Ge, L., and Sotiropoulos, F., “Curvilinear immersed boundary method for simulating fluid structure interaction with complex 3D rigid bodies”, Journal of Computational Physics, accepted.

2.                 Ge, L., Dasi, L. P., Sotiropoulos, F., and Yoganathan, A. P., 2008, “Characterization of Hemodynamic Forces Induced by Mechanical Heart Valves: Reynolds vs. Viscous Stresses”, Annals of Biomedical Engineering, 36(2), 276-297.

3.                 Dasi, L. P., Ge, L., Simon, H. A., Sotiropoulos, F., and Yoganathan, A. P., 2007, "Vorticity Dynamics of a Bileaflet Mechanical Heart Valve in an Axisymmetric Aorta", Physics of Fluids, 067105.

4.                 Ge, L., and Sotiropoulos, F., 2007, "A Numerical Method for Solving the 3D Unsteady Incompressible Navier-Stokes Equations in Curvilinear Domains with Complex Immersed Boundaries", Journal of Computational Physics, 225(2), pp 1782-1809.

5.                 Ge, L., Leo, H.L., Sotiropoulos, F., and Yoganathan, A.P., 2005, "Flow in a Mechanical Bileaflet Heart Valve at Laminar and Near-Peak Systole Flow Rates: CFD Simulations and Experiments", Journal of Biomechanical Engineering- Transactions of the ASME, 127(5), pp 782-797.

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