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diff biosketch.txt @ 122:fa908f6d11e1
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author | bshanks@bshanks.dyndns.org |
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date | Wed Jul 08 05:18:40 2009 -0700 (16 years ago) |
parents | |
children | 5f792263405e |
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1.22 +\usepackage{helvet}
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1.24 +
1.25 +\begin{document}
1.26 +== Biosketch: Charles F. Stevens ==
1.27 +
1.28 +=== Professional Preparation ===
1.29 +
1.30 +todo
1.31 +
1.32 +Undergraduate Institution(s)
1.33 +
1.34 +
1.35 +Major
1.36 +
1.37 +
1.38 +Degree + Year
1.39 +
1.40 +Graduate Institution(s)
1.41 +
1.42 +
1.43 +Major
1.44 +
1.45 +
1.46 +Degree + Year
1.47 +
1.48 +Postdoctoral Institution(s)
1.49 +
1.50 +
1.51 +Area
1.52 +
1.53 +
1.54 +Inclusive Dates (years)
1.55 +
1.56 +=== Appointments ===
1.57 +\begin{tabular}{lp{12.5cm}}
1.58 +\\1990 $-$ Present & Professor, Molecular Neurobiology Laboratory, The Salk Institute
1.59 +\\1986 $-$ 2008 & Investigator, Howard Hughes Medical Institute
1.60 +\\1983 $-$ 1990 & Professor and Chairman, Section of Molecular Neurobiology, Yale University School of Medicine
1.61 +\\1975 $-$ 1983 & Professor, Department of Physiology, Yale University School of Medicine
1.62 +\\1972 $-$ 1975 & Professor, Department of Physiology and Biophysics, University of Washington School of
1.63 + Medicine
1.64 +\\1969 $-$ 1970 & Guest Investigator, Lorentz Institute for Theoretical Physics, Leiden University, Leiden,
1.65 + Netherlands (sabbatical leave)
1.66 +\\1968 $-$ 1972 & Associate Professor, Department of Physiology and Biophysics, University of Washington
1.67 + School of Medicine
1.68 +\\1963 $-$ 1968 & Assistant Professor, Department of Physiology and Biophysics, University of Washington
1.69 + School of Medicine
1.70 +\end{tabular}
1.71 +
1.72 +
1.73 +=== Publications ===
1.74 +
1.75 +
1.76 +Stevens, C. F. (2001) An evolutionary scaling law for the primate visual system and its basis in cortical
1.77 + function. Nature 411:193-195.\\
1.78 +\\
1.79 +Chklovskii, D.M., Schikorski, T., and Stevens, C.F. (2002) Wiring optimization in cortical circuits. Neuron
1.80 + 34:341-347.\\
1.81 +\\
1.82 +Stevens, C.F. (2002) Predicting Functional Properties of Visual Cortex from an Evolutionary Scaling Law.\\
1.83 + Neuron 36:139-142.\\
1.84 +\\
1.85 +Gandhi, S.P., and Stevens, C.F. (2003) Three modes of synaptic vesicular recycling revealed by single-vesicle
1.86 + imaging. Nature 423:607-613.\\
1.87 +\\
1.88 +Klyachko, V.A. and Stevens, C.F. (2003) Connectivity optimization and the positioning of cortical areas. PNAS
1.89 + 10:7937-7941.\\
1.90 +\\
1.91 +Stevens, C.F. (2004) Preserving properties of object shape by computations in primary visual cortex. PNAS
1.92 + 101:15524-15529.\\
1.93 +\\
1.94 +Klyachko, V.A. and Stevens, C.F. (2006) Excitatory and feed-forward inhibitory hippocampal synapses work
1.95 + synergistically as an adaptive filter of natural spike trains. PLoS Biology 4:0001-0014.\\
1.96 +\\
1.97 +Lee, S and Stevens, C.F. (2007) General design principle for scalable neural circuits in a vertebrate retina.
1.98 + PNAS 104:12391-12935.\\
1.99 +\\
1.100 +Zhu, Y. and Stevens, C.F. (2008) Probing synaptic vesicle fusion by altering mechanical properties of the
1.101 + neuronal surface membrane. PNAS 105(46):18018-18022. \\
1.102 +\\
1.103 +Stevens, C.F. (2009) Darwin and Huxley revisited: the origin of allometry. Journal of Biology 8:14.
1.104 +
1.105 +=== Synergistic Activities ===
1.106 +todo
1.107 +
1.108 +=== Collaborators \& Other Affiliations ===
1.109 +todo
1.110 +
1.111 +
1.112 +
1.113 +\end{document}
1.114 +