Hong Qian’s biography:
Education & Training:
1992-1994 Postdoctoral Fellow, California Institute of Technology, Pasadena.
Mathematical biology and neural computation (with J.J. Hopfield)
1990-1992 Postdoctoral Fellow, University of Oregon, Eugene.
Biophysical chemistry of peptides, proteins, and DNA (with J.A. Schellman)
1983-1989 Ph.D., Washington University, St. Louis. Biochemistry and Biophysics.
Dissertation: Biophysical characterization of biopolymer solutions and gels by fluorescence
fluctuation studies (with E.L. Elson)
1978-1982 B.A., Peking University, Beijing. Astrophysics.
Thesis: On the effect of finite z-distributions in the density wave theory of spiral structures of
galaxies (with Z.Y. Yue)
Professional Experience:
2003- Associate Professor of Applied Mathematics, University of Washington.
2003- Adjunct Associate Professor, Bioengineering, University of Washington.
1997-2003 Assistant Professor of Applied Mathematics, University of Washington.
1997-2003 Adjunct Assistant Professor, Bioengineering, University of Washington.
1997- Associate Director, National Simulation Resource, Univeresity of Washington.
1994-1997 Adjunct Assistant Professor of Biomathematics, UCLA School of Medicine.
Reasearch Interest:
(1) Mathematical Theory of Nonlinear DNA Elasticity. Both deterministic and stochastic approaches will be employed.
(2) Mathematical Theory of Ionic Distribution around Cylindrical Molecules and Its Applications to DNA. ODE and its asymptotic analysis, numerical investigation, and Painleve equation.
(3) Mathematical Foundation of Fluorescence Correlation Spectroscopy and Its Related Methods. Including high-order time correlation function and generalization of Green-Kubo formulae.
(4) Protein Folding and Its Related Mathematical Problems. Kinetics in energy landscape, dimension reduction and simplex search, and relation to mutual information.
(5) Fluctuating Nonlinear Biochemical Reactions and Stochastic Resonance. Birth-death processes and Brownian motion, nonlinear oscillation, and phase space analysis: developing a stochastic version of the Wymann-DiCera kinetic network (hypercycle) and show its nonlinear stochastic behavior as well as SR.
(6) Stochastic Macromolecular Mechanics, Nonequilibrium Thermodynamics, and Their Applications. Brownian motion, large deviation theory, and nonlinear diffusion equation.
(7) An Algebreic-Topological Approach to Irreversible Markov Processes. Graph and network theory, asymmetric linear operator and its eigenvalues, non-normal matrix, and Markov processes.
联系人:唐 琳
电 话:62797063
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