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Proceedings of the National Academy of Sciences of the United States of America|November 30, 2005
The relationship between FRQ-protein stability and temperature compensation in the Neurospora circadian clockPeter Ruoff, Jennifer J Loros, Jay C Dunlap
The Journal of Physical Chemistry. B|June 3, 2017
Performance of Homeostatic Controller Motifs Dealing with Perturbations of Rapid Growth and DepletionGunhild Fjeld, Kristian Thorsen, Tormod Drengstig, et al.
Journal of Biological Rhythms|September 26, 2006
Lithium leads to an increased FRQ protein stability and to a partial loss of temperature compensation in the Neurospora circadian clockIngunn W Jolma, Grete Falkeid, Murad Bamerni, et al.
Biophysical Chemistry|October 15, 2003
Temperature dependency and temperature compensation in a model of yeast glycolytic oscillationsPeter Ruoff, Melinda K Christensen, Jana Wolf, et al.
Physiological Reports|September 15, 2017
Variable setpoint as a relaxing component in physiological controlGeir B Risvoll, Kristian Thorsen, Peter Ruoff, et al.
Wiley Interdisciplinary Reviews. Systems Biology and Medicine|September 14, 2010
Circadian oscillators in eukaryotesIngunn W Jolma, Ole Didrik Laerum, Cathrine Lillo, et al.
Journal of Theoretical Biology|May 11, 2016
Modeling the diversion of primary carbon flux into secondary metabolism under variable nitrate and light/dark conditionsRomain Larbat, Christophe Robin, Cathrine Lillo, et al.
Plos One|August 13, 2019
Homeostatic controllers compensating for growth and perturbationsPeter Ruoff, Oleg Agafonov, Daniel M Tveit, et al.
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