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Prediction of Photoperiodic Regulators from Quantitative Gene Circuit Models, , , , , , , , and . Cell, 139 (6): 1170--1179 (Dec 11, 2009)Isoform switching facilitates period control in the Neurospora crassa circadian clock., , , , , and . Molecular systems biology, (Feb 12, 2008)Data assimilation constrains new connections and components in a complex, eukaryotic circadian clock model, , , , , , , and . Molecular Systems Biology, (Sep 21, 2010)Chromar, a Rule-based Language of Parameterised Objects., , , and . SASB, volume 335 of Electronic Notes in Theoretical Computer Science, page 49-66. Elsevier, (2018)The clock gene circuit in Arabidopsis includes a repressilator with additional feedback loops., , , , , and . Molecular systems biology, (Mar 6, 2012)Stochastic properties of the plant circadian clock., , , , , and . Journal of the Royal Society, Interface / the Royal Society, (Aug 31, 2011)Plants in silico: Why, Why Now and What? --- An integrative platform for plant systems biology research., , , , , and . Plant, cell & environment, (Nov 2, 2015)Using Higher-Order Dynamic Bayesian Networks to Model Periodic Data from the Circadian Clock of Arabidopsis Thaliana., , , , , and . PRIB, volume 5780 of Lecture Notes in Computer Science, page 67-78. Springer, (2009)Digital clocks: simple Boolean models can quantitatively describe circadian systems, , , , , and . Journal of The Royal Society Interface, 9 (74): 2365--2382 (Sep 7, 2012)Plant Circadian Clocks Increase Photosynthesis, Growth, Survival, and Competitive Advantage, , , , , , , , and . Science, 309 (5734): 630-633 (2005)