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Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 1/2011, Volume 108, Issue 4, pp. 1657 - 1662
Circadian (daily) rhythms are present in almost all plants and animals. In mammals, a brain clock located in the hypothalamic suprachiasmatic nucleus maintains... 
Obesity | Brain | Neurons | Body temperature | Mice | Circadian rhythm | Metabolism | Insulin | Behavioral neuroscience | T tests | Biological clock | Structural plasticity | Cognitive function | Neuronal remodeling | cognitive function | LEPTIN | DEPRESSION | MULTIDISCIPLINARY SCIENCES | RATS | neuronal remodeling | structural plasticity | biological clock | SUPRACHIASMATIC NUCLEUS | MEDIAL PREFRONTAL CORTEX | CONSEQUENCES | RESISTANCE | WEIGHT-GAIN | MICE | BODY | Motor Activity - physiology | Brain - cytology | Maze Learning - physiology | Humans | Mice, Inbred C57BL | Behavior, Animal - physiology | Male | Weight Gain - physiology | Circadian Rhythm - physiology | Photoperiod | Body Temperature - physiology | Insulin - blood | Prefrontal Cortex - cytology | Brain - physiology | Animals | Leptin - blood | Biological Clocks - physiology | Neurons - physiology | Blood Glucose - metabolism | Energy Metabolism - physiology | Circadian Clocks - physiology | Prefrontal Cortex - physiology | Circadian rhythms | Physiological aspects | Cognition | Health aspects | Human subjects | Neurosciences | Rodents | Physiology | Models | Index Medicus | Suprachiasmatic nucleus | Cortex (prefrontal) | Executive function | Cognitive ability | CLOCK protein | Hormones | Hypothalamus | Housing | Light effects | Emotions | Travel | Sleep | Biological Sciences
Journal Article
Nature neuroscience, ISSN 1097-6256, 2014, Volume 17, Issue 7, pp. 908 - 910
Journal Article
Journal of Neuroscience, ISSN 0270-6474, 11/2014, Volume 34, Issue 46, pp. 15306 - 15318
Journal Article
Science, ISSN 0036-8075, 4/2004, Volume 304, Issue 5667, pp. 108 - 110
In adult mammals, the adipocyte-derived hormone leptin acts on the brain to reduce food intake by regulating the activity of neurons in the arcuate nucleus of... 
Neurites | Neuroscience | Neurons | Food intake | Innervation | Reports | Mice | Adults | Hypothalamus | Hormones | Critical periods | ENERGY-BALANCE | BODY-WEIGHT | NERVOUS-SYSTEM | OBESITY | THYROID-HORMONE | MULTIDISCIPLINARY SCIENCES | BRAIN-DEVELOPMENT | Paraventricular Hypothalamic Nucleus - physiology | Hypothalamus - growth & development | Neurites - physiology | Culture Techniques | Dorsomedial Hypothalamic Nucleus - physiology | Hypothalamic Area, Lateral - cytology | Arcuate Nucleus of Hypothalamus - cytology | Axons - physiology | Proteins - analysis | Arcuate Nucleus of Hypothalamus - growth & development | Carbocyanines | Leptin - physiology | Paraventricular Hypothalamic Nucleus - cytology | Nerve Fibers - physiology | Hypothalamic Area, Lateral - physiology | Neurons - physiology | Leptin - pharmacology | Animals, Newborn | Eating | Signal Transduction | Dorsomedial Hypothalamic Nucleus - cytology | Hypothalamus - physiology | Hypothalamic Area, Lateral - growth & development | Intercellular Signaling Peptides and Proteins | Mice, Inbred C57BL | Feeding Behavior | Leptin - genetics | Recombinant Proteins - pharmacology | Arcuate Nucleus of Hypothalamus - physiology | Animals | Hypothalamus - cytology | Mice, Obese | Dorsomedial Hypothalamic Nucleus - growth & development | Leptin - deficiency | Paraventricular Hypothalamic Nucleus - growth & development | Agouti-Related Protein | alpha-MSH - analysis | Physiological aspects | Chemical properties | Eating (Physiology) | Leptin | Neurology | Nutrition | Rodents | Index Medicus
Journal Article
Cell Metabolism, ISSN 1550-4131, 07/2013, Volume 18, Issue 1, pp. 86 - 98
Journal Article
PLoS ONE, ISSN 1932-6203, 12/2008, Volume 3, Issue 12, pp. e4038 - e4038
Some mammals, including laboratory mice, enter torpor in response to food deprivation, and leptin can attenuate these bouts of torpor. We previously showed... 
BIOLOGY | Norepinephrine - pharmacology | Basal Metabolism - genetics | Recovery of Function - drug effects | Norepinephrine - physiology | Male | Basal Metabolism - drug effects | Body Weight - genetics | Eating - physiology | Leptin - physiology | Recovery of Function - physiology | Behavior, Animal - drug effects | Female | Energy Metabolism - genetics | Recovery of Function - genetics | Fasting - physiology | Adipose Tissue, Brown - physiology | Basal Metabolism - physiology | Behavior, Animal - physiology | Leptin - genetics | Signal Transduction - genetics | Eating - genetics | Mice, Knockout | Animals | Signal Transduction - drug effects | Adrenergic beta-3 Receptor Antagonists | Dopamine beta-Hydroxylase - genetics | Mice, Obese | Signal Transduction - physiology | Adipose Tissue, Brown - drug effects | Mice | Body Weight - physiology | Energy Metabolism - drug effects | Fasting | Noradrenaline | Leptin | Animal models | Zoology | Nervous system | Males | Recovery | Experiments | Dietary restrictions | Receptors | Torpor | Marsupials | Rodents | Hibernation | Emergence | Food | Adaptation | Obesity | Phenotypes | Deprivation | Dopamine | Nutrition | Hydroxylase | Body temperature | Gender differences | Metabolism | Muscle contraction | Signaling | Heat | Hypotheses | Thermogenesis | Adrenergic receptors | Norepinephrine | Diabetes | Mutation | Receptors (physiology) | Endocrinology | Index Medicus
Journal Article
Nature, ISSN 0028-0836, 12/2006, Volume 444, Issue 7122, pp. 1009 - 1010
Journal Article
Journal Article