William L. Kath

Affiliations: 
Northwestern University, Evanston, IL 
Area:
Computational Neuroscience
Website:
http://people.esam.northwestern.edu/~kath/
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"William Kath"
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Children

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Nathan Kutz grad student 1994 Northwestern (MathTree)
Brian S. Marks grad student 2000 Northwestern
Sandip K. Bhatt grad student 2002 Northwestern
Elaine T. Spiller grad student 2005 Northwestern
Graham M. Donovan grad student 2008 Northwestern
Matthew S. McCallum grad student 2008 Northwestern
Vilas Menon grad student 2009 Northwestern
Mark S. Cembrowski grad student 2011 Northwestern
Rachel E. Trana grad student 2012 Northwestern
Hannah Choi grad student 2014 Northwestern
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Publications

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Sanford NL, Donovan GM, Kath WL. (2020) Slip Rates and Slip Modes in an Actively Mode-Locked Laser Siam Journal On Applied Dynamical Systems. 19: 1472-1495
Abouzeid A, Spruston N, Kath W. (2015) Fully-automated multi-objective optimization for fitting a neuronal model with real morphology Bmc Neuroscience. 16
Kath WL. (2015) A Newton-based shooting method to find synaptic threshold in active cables Bmc Neuroscience. 16
Choi H, Zhang L, Cembrowski MS, et al. (2014) Intrinsic bursting of AII amacrine cells underlies oscillations in the rd1 mouse retina. Journal of Neurophysiology. 112: 1491-504
Ke JB, Wang YV, Borghuis BG, et al. (2014) Adaptation to background light enables contrast coding at rod bipolar cell synapses. Neuron. 81: 388-401
Schuster J, Marzec Z, Kath WL, et al. (2014) Hybrid hinge model for polarization-mode dispersion in installed fiber transmission systems Journal of Lightwave Technology. 32: 1412-1419
Menon V, Musial TF, Liu A, et al. (2013) Balanced synaptic impact via distance-dependent synapse distribution and complementary expression of AMPARs and NMDARs in hippocampal dendrites. Neuron. 80: 1451-63
Riecke H, Choi H, Cembrowski MS, et al. (2013) Spikelets and bursts in axonless retinal AII amacrine cells coupled by gap junctions Bmc Neuroscience. 14
Graves AR, Moore SJ, Bloss EB, et al. (2013) Hippocampal Pyramidal Neurons Comprise Two Distinct Cell Types that Are Countermodulated by Metabotropic Receptors Neuron. 77: 376
Graves AR, Moore SJ, Bloss EB, et al. (2012) Hippocampal pyramidal neurons comprise two distinct cell types that are countermodulated by metabotropic receptors. Neuron. 76: 776-89
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