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| Title | Published in | Access level | OA Policy | Year | Views | Downloads | |
|---|---|---|---|---|---|---|---|
| Transcriptomic analyses reveal rhythmic and CLOCK-driven pathways in human skeletal muscle | eLife | 2018 | 588 | 225 | |||
| Lipidomics reveals diurnal lipid oscillations in human skeletal muscle persisting in cellular myotubes cultured in vitro | Proceedings of the National Academy of Sciences | 2017 | 803 | 0 | |||
| Guidelines for Genome-Scale Analysis of Biological Rhythms | Journal of biological rhythms | 2017 | 91 | 98 | |||
| Glucose Homeostasis: Regulation by Peripheral Circadian Clocks in Rodents and Humans | Endocrinology | 2017 | 539 | 0 | |||
| Pancreatic α- and β-cellular clocks have distinct molecular properties and impact on islet hormone secretion and gene expression | Genes and Development | 2017 | 636 | 51 | |||
| USP2-45 Is a Circadian Clock Output Effector Regulating Calcium Absorption at the Post-Translational Level | PLOS ONE | 2016 | 480 | 252 | |||
| Circadian Dysfunction and Obesity: Is Leptin the Missing Link? | Cell Metabolism | 2015 | 447 | 0 | |||
| The circadian PAR-domain basic leucine zipper transcription factors DBP, TEF, and HLF modulate basal and inducible xenobiotic detoxification | Cell metabolism | 2006 | 583 | 1 | |||
| The mammalian circadian timing system: from gene expression to physiology | Chromosoma | 2004 | 571 | 654 |
