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Plos One|October 11, 2012
Ionic mechanism underlying optimal stimuli for neuronal excitation: role of Na+ channel inactivationJohn R Clay, Daniel B Forger, David Paydarfar
Plos Computational Biology|July 16, 2011
Optimal stimulus shapes for neuronal excitationDaniel B Forger, David Paydarfar, John R Clay
Journal of Neurophysiology|September 8, 2006
Noisy inputs and the induction of on-off switching behavior in a neuronal pacemakerDavid Paydarfar, Daniel B Forger, John R Clay
Journal of the Royal Society, Interface|June 12, 2008
A simple modification of the Hodgkin and Huxley equations explains type 3 excitability in squid giant axonsJohn R Clay, David Paydarfar, Daniel B Forger
Science Advances|July 8, 2016
A global quantification of "normal" sleep schedules using smartphone dataOlivia J Walch, Amy Cochran, Daniel B Forger
Genome Biology|January 11, 2022
Evolution of the repression mechanisms in circadian clocksJonathan Tyler, Yining Lu, Jay Dunlap, et al.
Plos Computational Biology|June 23, 2009
Taking the lag out of jet lag through model-based schedule designDennis A Dean, Daniel B Forger, Elizabeth B Klerman
Journal of Biological Rhythms|June 23, 2023
Impact of Light Schedules and Model Parameters on the Circadian Outcomes of IndividualsCaleb Mayer, Olivia Walch, Daniel B Forger, et al.
Interface Focus|June 7, 2014
It is not the parts, but how they interact that determines the behaviour of circadian rhythms across scales and organismsDaniel DeWoskin, Weihua Geng, Adam R Stinchcombe, et al.
Plos Computational Biology|December 28, 2020
Optimal adjustment of the human circadian clock in the real worldSamuel Christensen, Yitong Huang, Olivia J Walch, et al.
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