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Journal of Biological Rhythms
|
January 22, 2000
Interactive mathematical models of subjective alertness and cognitive throughput in humans
M E Jewett, R E Kronauer
Journal of Theoretical Biology
|
July 29, 1998
Refinement of a limit cycle oscillator model of the effects of light on the human circadian pacemaker
M E Jewett, R E Kronauer
Journal of Biological Rhythms
|
January 22, 2000
Commentary: model building, quantitative testing, and model comparison
E B Klerman, M E Jewett
The American Journal of Physiology
|
October 1, 1993
Torpor shortens the period of Siberian hamster circadian rhythms
E M Thomas, M E Jewett, I Zucker
Journal of Biological Rhythms
|
January 22, 2000
Quantifying human circadian pacemaker response to brief, extended, and repeated light stimuli over the phototopic range
R E Kronauer, D B Forger, M E Jewett
Journal of Biological Rhythms
|
January 22, 2000
A simpler model of the human circadian pacemaker
D B Forger, M E Jewett, R E Kronauer
Nature
|
March 7, 1991
Light-induced suppression of endogenous circadian amplitude in humans
M E Jewett, R E Kronauer, C A Czeisler
Journal of Biological Rhythms
|
January 22, 2000
Revised limit cycle oscillator model of human circadian pacemaker
M E Jewett, D B Forger, R E Kronauer
Journal of Biological Rhythms
|
January 1, 1994
Phase-amplitude resetting of the human circadian pacemaker via bright light: a further analysis
M E Jewett, R E Kronauer, C A Czeisler
Journal of Biological Rhythms
|
December 6, 2000
The timing of the human circadian clock is accurately represented by the core body temperature rhythm following phase shifts to a three-cycle light stimulus near the critical zone
Khalsa SBS, M E Jewett, J F Duffy, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 14) with videos related to
Sort By:
Page
of 2
Journal of Biological Rhythms
|
January 22, 2000
Interactive mathematical models of subjective alertness and cognitive throughput in humans
M E Jewett, R E Kronauer
Journal of Theoretical Biology
|
July 29, 1998
Refinement of a limit cycle oscillator model of the effects of light on the human circadian pacemaker
M E Jewett, R E Kronauer
Journal of Biological Rhythms
|
January 22, 2000
Commentary: model building, quantitative testing, and model comparison
E B Klerman, M E Jewett
The American Journal of Physiology
|
October 1, 1993
Torpor shortens the period of Siberian hamster circadian rhythms
E M Thomas, M E Jewett, I Zucker
Journal of Biological Rhythms
|
January 22, 2000
Quantifying human circadian pacemaker response to brief, extended, and repeated light stimuli over the phototopic range
R E Kronauer, D B Forger, M E Jewett
Journal of Biological Rhythms
|
January 22, 2000
A simpler model of the human circadian pacemaker
D B Forger, M E Jewett, R E Kronauer
Nature
|
March 7, 1991
Light-induced suppression of endogenous circadian amplitude in humans
M E Jewett, R E Kronauer, C A Czeisler
Journal of Biological Rhythms
|
January 22, 2000
Revised limit cycle oscillator model of human circadian pacemaker
M E Jewett, D B Forger, R E Kronauer
Journal of Biological Rhythms
|
January 1, 1994
Phase-amplitude resetting of the human circadian pacemaker via bright light: a further analysis
M E Jewett, R E Kronauer, C A Czeisler
Journal of Biological Rhythms
|
December 6, 2000
The timing of the human circadian clock is accurately represented by the core body temperature rhythm following phase shifts to a three-cycle light stimulus near the critical zone
Khalsa SBS, M E Jewett, J F Duffy, et al.
Page
of 2