Neural regulation of circadian rhythms.B Rusak, and I ZuckerB Rusak, andI ZuckerPublished Online:01 Jul 1979https://doi.org/10.1152/physrev.1979.59.3.449MoreSectionsPDF (13 MB)Download PDF ToolsExport citationAdd to favoritesGet permissionsTrack citations ShareShare onFacebookTwitterLinkedInWeChat Back to Top Next Download PDF FiguresReferencesRelatedInformation CollectionsAPS Cross-Journal Collections125th Anniversary Collection Cited ByExposure to unmethylated CpG oligonucleotides disrupts blood pressure circadian rhythms and placental clock gene network in pregnant ratsJessica L. Bradshaw, Spencer C. Cushen, Contessa A. Ricci, Selina M. Tucker, Jennifer J. Gardner, Joel T. Little, Oluwatobiloba Osikoya, andStyliani Goulopoulou21 July 2023 | American Journal of Physiology-Heart and Circulatory Physiology, Vol. 325, No. 2Pharmacology and Therapeutic Potential of the 5-HT 7 Receptor18 July 2018 | ACS Chemical Neuroscience, Vol. 10, No. 1Circadian Clock, Epigenetic Regulators (Sirtuins), and MetabolismTwo Coupled Circadian Oscillators Are Involved in Nonphotic Acceleration of Reentrainment to Shifted Light Cycles in Mice4 September 2018 | Journal of Biological Rhythms, Vol. 33, No. 6Jetlag related sleep problems and their management: A reviewTravel Medicine and Infectious Disease, Vol. 24Circadian rhythms of clock gene expression in the cerebellum of serotonin-deficient Pet-1 knockout miceBrain Research, Vol. 1630Phase-dependent resetting of the adrenal clock by ACTH in vitroJ. Marina Yoder, Megan Brandeland, andWilliam C. Engeland15 March 2014 | American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, Vol. 306, No. 6Entrainment of peripheral clock genes by cortisolPanteleimon D. Mavroudis, Jeremy D. Scheff, Steve E. Calvano, Stephen F. Lowry, andIoannis P. Androulakis1 June 2012 | Physiological Genomics, Vol. 44, No. 11Cocaine modulates pathways for photic and nonphotic entrainment of the mammalian SCN circadian clockJ. David Glass, Allison J. Brager, Adam C. Stowie, andRebecca A. Prosser15 March 2012 | American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, Vol. 302, No. 6Chronic ethanol attenuates circadian photic phase resetting and alters nocturnal activity patterns in the hamsterChristina L. Ruby, Allison J. Brager, Marc A. DePaul, Rebecca A. Prosser, andJ. David Glass1 September 2009 | American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, Vol. 297, No. 3Circadian rhythm transcription factor CLOCK regulates the transcriptional activity of the glucocorticoid receptor by acetylating its hinge region lysine cluster: potential physiological implicationsThe FASEB Journal, Vol. 23, No. 5Distinct Roles of Metabotropic Glutamate Receptor Activation on Inhibitory Signaling in the Ventral Lateral Geniculate NucleusG. Govindaiah, andCharles L. Cox1 April 2009 | Journal of Neurophysiology, Vol. 101, No. 4Acute ethanol impairs photic and nonphotic circadian phase resetting in the Syrian hamsterChristina L. Ruby, Rebecca A. Prosser, Marc A. DePaul, Randy J. Roberts, andJ. David Glass1 February 2009 | American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, Vol. 296, No. 2Circadian Rhythms and Photoperiodism30 May 2008Metabolic rhythm abnormalities in mice lacking VIP-VPAC2 signalingDavid A. Bechtold*, Timothy M. Brown*, Simon M. Luckman, andHugh D. Piggins1 February 2008 | American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, Vol. 294, No. 2Effect of upregulated renin–angiotensin system on per2 and bmal1 gene expression in brain structures involved in blood pressure control in TGR(mREN-2)27 ratsBrain Research, Vol. 1180Long-lasting effects of serotonin deficiency on differentiating peptidergic neurons in the rat suprachiasmatic nucleusInternational Journal of Developmental Neuroscience, Vol. 23, No. 1Binocular Interactions in the Entrainment and Phase Shifting of Locomotor Activity Rhythms in Syrian Hamsters29 June 2016 | Journal of Biological Rhythms, Vol. 20, No. 1Habituation to a test apparatus during associative learning is sufficient to enhance muscarinic acetylcholine receptor-immunoreactivity in rat suprachiasmatic nucleusJournal of Neuroscience Research, Vol. 78, No. 4Calcium Dynamics and Circadian Rhythms in Suprachiasmatic Nucleus Neurons29 June 2016 | The Neuroscientist, Vol. 10, No. 4Cytoarchitectonic and connectional organization of the ventral lateral geniculate nucleus in the cat1 January 2004 | The Journal of Comparative Neurology, Vol. 473, No. 4Cold exposure induces tyrosine phosphorylation of BIT through NMDA receptors in the rat hypothalamusBiochemical and Biophysical Research Communications, Vol. 319, No. 1Nocturia and depressionBJU International, Vol. 93, No. 9Bidirectional role of orphan nuclear receptor RORα in clock gene transcriptions demonstrated by a novel reporter assay system9 April 2004 | FEBS Letters, Vol. 565, No. 1-3Short-term exposure to constant light promotes strong circadian phase-resetting responses to nonphotic stimuli in Syrian hamstersEuropean Journal of Neuroscience, Vol. 19, No. 10Qualitative and quantitative changes of melatonin levels in physiological and pathological aging and in centenariansJournal of Pineal Research, Vol. 36, No. 4Vasoactive intestinal polypeptide phase-advances the rat suprachiasmatic nuclei circadian pacemaker in vitro via protein kinase A and mitogen-activated protein kinaseNeuroscience Letters, Vol. 358, No. 2Resetting the brain clock: time course and localization of mPER1 and mPER2 protein expression in suprachiasmatic nuclei during phase shifts17 February 2004 | European Journal of Neuroscience, Vol. 19, No. 424-Hour Changes in Circulating Prolactin, Follicle-Stimulating Hormone, Luteinizing Hormone, and Testosterone in Young Male Rats Subjected to Calorie Restriction7 July 2009 | Chronobiology International, Vol. 21, No. 3Digging deep - structure-function relationships in the melatonin receptor familyJournal of Pineal Research, Vol. 35, No. 4GABA Receptor-Mediated Inhibition of Neuronal Activity in Rat SCN In Vitro: Pharmacology and Influence of Circadian PhaseValentin K. Gribkoff, Rick L. Pieschl, andF. Edward Dudek1 September 2003 | Journal of Neurophysiology, Vol. 90, No. 3Bimodal circadian secretion of melatonin from the pineal gland in a living CBA mouse21 July 2003 | Proceedings of the National Academy of Sciences, Vol. 100, No. 16Changes in L1 and NCAM expression in the rat suprachiasmatic nucleus during growth and after orbital enucleationDevelopmental Brain Research, Vol. 143, No. 2Transduction of light in the suprachiasmatic nucleus: evidence for two different neurochemical cascades regulating the levels of Per1 mRNA and pineal melatoninNeuroscience, Vol. 119, No. 1SB-656104-A, a novel selective 5-HT 7 receptor antagonist, modulates REM sleep in ratsBritish Journal of Pharmacology, Vol. 139, No. 4Determination of endogenous melatonin in the individual pineal glands of inbred mice using precolumn oxidation reversed-phase micro-high-performance liquid chromatographyAnalytical Biochemistry, Vol. 316, No. 2Gene expression of neuropeptide Y in the nucleus of the solitary tract is activated in rats under restricted daily feeding but not under 48-h food deprivation29 May 2003 | European Journal of Neuroscience, Vol. 17, No. 10Pre- and postsynaptic gabab receptors modulate rapid neurotransmission from suprachiasmatic nucleus to parvocellular hypothalamic paraventricular nucleus neuronsNeuroscience, Vol. 118, No. 1A Hes1-based oscillator in cultured cells and its potential implications for the segmentation clock20 February 2003 | BioEssays, Vol. 25, No. 3Entrainment of circadian locomotor activity rhythm of the nocturnal field mouseMus booduga using daily injections of melatonin14 February 2003 | Journal of Experimental Zoology, Vol. 296A, No. 1Dynamic regulation of polysialylated neural cell adhesion molecule in the suprachiasmatic nucleusNeuroscience, Vol. 117, No. 1Daily Rhythms in Glucose Metabolism: Suprachiasmatic Nucleus Output to Peripheral Tissue13 February 2003 | Journal of Neuroendocrinology, Vol. 15, No. 3The circadian Clock mutation increases exploratory activity and escape-seeking behavior31 January 2003 | Genes, Brain and Behavior, Vol. 2, No. 1Electrophysiology of optic nerve input to suprachiasmatic nucleus neurons in rats and degusBrain Research, Vol. 960, No. 1-2Developmental and circadian changes in Ca 2+ mobilization mediated by GABA A and NMDA receptors in the suprachiasmatic nucleus8 January 2003 | European Journal of Neuroscience, Vol. 17, No. 1Hypothalamic Circadian Organization in Birds. I. Anatomy, Functional Morphology, and Terminology of the Suprachiasmatic Region7 July 2009 | Chronobiology International, Vol. 20, No. 4Neuropeptide Y and its receptors as potential therapeutic drug targetsClinica Chimica Acta, Vol. 326, No. 1-2Photic Resetting of the Human Circadian Pacemaker in the Absence of Conscious Vision29 June 2016 | Journal of Biological Rhythms, Vol. 17, No. 6Removal of polysialic acid from the SCN potentiates nonphotic circadian phase resettingPhysiology & Behavior, Vol. 77, No. 2-3Indirect projections from the suprachiasmatic nucleus to the ventrolateral preoptic nucleus: a dual tract-tracing study in rat29 October 2002 | European Journal of Neuroscience, Vol. 16, No. 7Effects of aging on central and peripheral mammalian clocks29 July 2002 | Proceedings of the National Academy of Sciences, Vol. 99, No. 16A Ba2+-Sensitive K+ Current Contributes to the Resting Membrane Potential of Neurons in Rat Suprachiasmatic NucleusMarcel de Jeu, Alwin Geurtsen, andCyriel Pennartz1 August 2002 | Journal of Neurophysiology, Vol. 88, No. 2Effects of Vasoactive Intestinal Polypeptide on Neurones of the Rat Suprachiasmatic Nuclei In Vitro1 August 2002 | Journal of Neuroendocrinology, Vol. 14, No. 8Interaction of the Retina with Suprachiasmatic Pacemakers in the Control of Circadian Behavior29 June 2016 | Journal of Biological Rhythms, Vol. 17, No. 4The Orphan Nuclear Receptor REV-ERBα Controls Circadian Transcription within the Positive Limb of the Mammalian Circadian OscillatorCell, Vol. 110, No. 2Neurotensin phase-shifts the firing rate rhythm of neurons in the rat suprachiasmatic nuclei in vitro2 August 2002 | European Journal of Neuroscience, Vol. 16, No. 2The temporal organization of ingestive behaviour and its interaction with regulation of energy balanceNeuroscience & Biobehavioral Reviews, Vol. 26, No. 4Seasonal Changes in Adiposity: the Roles of the Photoperiod, Melatonin and Other Hormones, and Sympathetic Nervous System29 November 2016 | Experimental Biology and Medicine, Vol. 227, No. 6Circadian Modulation of GABA Function in the Rat Suprachiasmatic Nucleus: Excitatory Effects During the Night PhaseMarcel De Jeu, andCyriel Pennartz1 February 2002 | Journal of Neurophysiology, Vol. 87, No. 2The Suprachiasmatic Nucleus Exhibits Diurnal Variations in Spontaneous Excitatory Postsynaptic Activity29 June 2016 | Journal of Biological Rhythms, Vol. 17, No. 1Circadian Rhythms in the Endocrine SystemModes of plasticity within the mammalian circadian systemMDMA and fenfluramine alter the response of the circadian clock to a serotonin agonist in vitroBrain Research, Vol. 920, No. 1-2Glutamate and GABA mediate suprachiasmatic nucleus inputs to spinal-projecting paraventricular neuronsLu-Ning Cui, Elaine Coderre, andLeo P. Renaud1 October 2001 | American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, Vol. 281, No. 4Phase-advance shifts of human circadian pacemaker are accelerated by daytime physical exerciseToshihiko Miyazaki, Satoko Hashimoto, Satoru Masubuchi, Sato Honma, andKen-Ichi Honma1 July 2001 | American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, Vol. 281, No. 1SCN Efferents to Peripheral Tissues: Implications for Biological Rhythms29 June 2016 | Journal of Biological Rhythms, Vol. 16, No. 3Involvement of the suprachiasmatic nucleus in diurnal ACTH and corticosterone responsiveness to stressDominique Sage, Daniel Maurel, andOlivier Bosler1 February 2001 | American Journal of Physiology-Endocrinology and Metabolism, Vol. 280, No. 2Photic and nonphotic circadian phase resetting in a diurnal primate, the common marmosetJ. David Glass, Suzette D. Tardif, Robert Clements, andN. Mrosovsky1 January 2001 | American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, Vol. 280, No. 1Role of suprachiasmatic nuclei in circadian and light-entrained behavioral rhythms of lizardsCristiano Bertolucci, Valeria Anna Sovrano, Maria Chiara Magnone, andAugusto Foà1 December 2000 | American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, Vol. 279, No. 6Clock genes outside the suprachiasmatic nucleus involved in manifestation of locomotor activity rhythm in ratsEuropean Journal of Neuroscience, Vol. 12, No. 12Light Pulses Suppress Responsiveness within the Mouse Photic Entrainment Pathway29 June 2016 | Journal of Biological Rhythms, Vol. 15, No. 5Acute effects of light on body temperature and activity in Syrian hamsters: influence of circadian phaseXiaowei Song, andBenjamin Rusak1 May 2000 | American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, Vol. 278, No. 5Fos in the Suprachiasmatic Nucleus of House Mouse Lines That Reveal a Different Phase-Delay Response to the Same Light Pulse29 June 2016 | Journal of Biological Rhythms, Vol. 15, No. 2Cyclic AMP and protein kinase A rhythmicity in the mammalian suprachiasmatic nucleiBrain Research, Vol. 858, No. 1No evidence for extraocular light induced phase shifting of human melatonin, cortisol and thyrotropin rhythmsNeuroReport, Vol. 11, No. 4Physiological Response Properties of Cat Retinal Ganglion Cells Projecting to Suprachiasmatic Nucleus29 June 2016 | Journal of Biological Rhythms, Vol. 15, No. 1Organization of rat circadian rhythms during daily infusion of melatonin or S20098, a melatonin agonistB. Pitrosky, R. Kirsch, A. Malan, E. Mocaer, andP. Pevet1 September 1999 | American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, Vol. 277, No. 3Serotonin Modulates Glutamate Responses in Isolated Suprachiasmatic Nucleus NeuronsJorge E. Quintero, andDouglas G. McMahon1 August 1999 | Journal of Neurophysiology, Vol. 82, No. 2In Vivo Assessment of the Midbrain Raphe Nuclear Regulation of Serotonin Release in the Hamster Suprachiasmatic NucleusThomas E. Dudley, Lisa A. Dinardo, andJ. David Glass1 April 1999 | Journal of Neurophysiology, Vol. 81, No. 4Photic responses of suprachiasmatic area neurons in diurnal degus ( Octodon degus ) and nocturnal rats ( Rattus norvegicus )Brain Research, Vol. 817, No. 1-2Day/Night Differences in the Stimulation of Adenylate Cyclase Activity by Calcium/Calmodulin in Chick Pineal Cell Cultures: Evidence for Circadian Regulation of Cyclic AMP29 June 2016 | Journal of Biological Rhythms, Vol. 13, No. 6Effect of Reversed Light-Dark Cycle on Skin Conductance in Male Rats31 August 2016 | Perceptual and Motor Skills, Vol. 87, No. 3_supplInnervation of mammalian white adipose tissue: implications for the regulation of total body fatTimothy J. Bartness, andMaryam Bamshad1 November 1998 | American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, Vol. 275, No. 5Temporospatial characteristics of light-induced Fos immunoreactivity in suprachiasmatic nuclei are not modified in Syrian hamsters treated neonatally with monosodium glutamateBrain Research, Vol. 808, No. 2Melatonin inhibits spontaneous and VIP-induced vasopressin release from suprachiasmatic neuronsBrain Research, Vol. 801, No. 1-2Histamine Phase Shifts the Hamster Circadian Pacemaker via an NMDA Dependent Mechanism29 June 2016 | Journal of Biological Rhythms, Vol. 13, No. 4A Serum Shock Induces Circadian Gene Expression in Mammalian Tissue Culture CellsCell, Vol. 93, No. 6Entrainment of Rat Circadian Rhythms by the Melatonin Agonist S-20098 Requires Intact Suprachiasmatic Nuclei But Not the Pineal29 June 2016 | Journal of Biological Rhythms, Vol. 13, No. 1Melatonin attenuates photic disruption of circadian rhythms in Siberian hamstersNorman F. Ruby, Tom Kang, andH. Craig Heller1 October 1997 | American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, Vol. 273, No. 4Suprachiasmatic Nuclei Lesions Do Not Eliminate Homeostatic Thermoregulatory Responses in Rats29 June 2016 | Journal of Biological Rhythms, Vol. 12, No. 3Change in Photoperiodic Cycle Affects Life Span in a Prosimian Primate (Microcebus murinus29 June 2016 | Journal of Biological Rhythms, Vol. 12, No. 2Phase-Advanced Daily Rhythms of Melatonin, Body Temperature, and Locomotor Activity in Food-Restricted Rats Fed during Daytime29 June 2016 | Journal of Biological Rhythms, Vol. 12, No. 1Circadian Rhythms and Psychiatric Disorders in the Elderly1 December 1996 | Journal of Geriatric Psychiatry and Neurology, Vol. 9, No. 4A possible homologue of the suprachiasmatic nucleus in the hypothalamus of lampreys (Lampetra fluviatilis L.)Neuroscience Letters, Vol. 217, No. 2-3Thetau mutation shortens the period of rhythmic photoreceptor outer segment disk shedding in the hamsterBrain Research, Vol. 735, No. 1Constant light induces persistent Fos expression in rat intergeniculate leafletBrain Research, Vol. 731, No. 1-2Restoration of Circadian Rhythmicity by Transplants of SCN "Micropunches"29 June 2016 | Journal of Biological Rhythms, Vol. 11, No. 2Physiology of the Circadian System in Animals and HumansJournal of Clinical Neurophysiology, Vol. 13, No. 1Morphological Changes in the Hypothalamic Suprachiasmatic Nucleus and Circadian Rhythm of Locomotor Activity in Hereditary Microphthalmic Rats.Experimental Animals, Vol. 45, No. 2Two Distinct Retinal Projections to the Hamster Suprachiasmatic Nucleus29 June 2016 | Journal of Biological Rhythms, Vol. 10, No. 4Effect of Ω‐conotoxin, a calcium channel blocker, on the circadian rhythm in rats22 September 2008 | Biological Rhythm Research, Vol. 26, No. 5The Biological Basis of Homosexuality: A Christian Assessment8 February 2018 | Journal of Psychology and Theology, Vol. 23, No. 2The Pineal Gland: Photoreception and Coupling of Behavioral, Metabolic, and Cardiovascular Circadian Outputs29 June 2016 | Journal of Biological Rhythms, Vol. 10, No. 1Tryptophan Loading Modulates Light-Induced Responses in the Mammalian Circadian System29 June 2016 | Journal of Biological Rhythms, Vol. 10, No. 1Suprachiasmatic Nucleus in the Neural Circuitry for the Circadian Elevation of Intraocular Pressure in RabbitsJournal of Ocular Pharmacology and Therapeutics, Vol. 11, No. 3Nitric oxide-synthesizing neurons in the hamster suprachiasmatic nucleus: a combined NOS- and NADPH- staining and retinohypothalamic tract tracing studyBrain Research, Vol. 666, No. 2Circadian rhythms and energy metabolism with special reference to the suprachiasmatic nucleusNeuroscience & Biobehavioral Reviews, Vol. 18, No. 4Dysregulation of photic induction of Fos-related protein in the biological clock during experimental trypanosomiasisNeuroscience Letters, Vol. 182, No. 1Possible involvement of nitric oxide in generation of orcadian rhythm22 September 2008 | Biological Rhythm Research, Vol. 25, No. 4An attempt to correlate brain areas containing melatonin-binding sites with rhythmic functions: a study in five hibernator speciesCell and Tissue Research, Vol. 278, No. 1Serotonergic inhibition of extracellular glutamate in the suprachiasmatic nuclear region assessed using in vivo brain microdialysisBrain Research, Vol. 656, No. 2Host resets phase of grafted suprachiasmatic nucleus: a 2-DG study of time course of entrainmentBrain Research, Vol. 655, No. 1-2Effects of serotonergic agonists on firing rates of photically responsive cells in the hamster suprachiasmatic nucleusBrain Research, Vol. 651, No. 1-2Visual and circadian responses to light in aged retinally degenerate miceVision Research, Vol. 34, No. 14Host resets phase of grafted SCN: influence of implant site, tissue specificity and pineal secretionNeuroscience Letters, Vol. 176, No. 1Permissive effect of VIP on the hyperglycemic response induced by 2-deoxy-d-glucoseNeuroscience Letters, Vol. 175, No. 1-2Projections of the suprachiasmatic nuclei, subparaventricular zone and retrochiasmatic area in the golden hamsterNeuroscience, Vol. 61, No. 2Stable vasopressin innervation in the degenerating human locus coeruleus in Alzheimer's diseaseBrain Research, Vol. 649, No. 1-2Aromatic l-amino acid decar☐ylase immunohistochemistry in the suprachiasmatic nucleus of the sheep Comparison with tyrosine hydroxylase immunohistochemistryBrain Research, Vol. 648, No. 2Effect of chronic tryptophan depletion on the circadian rhythm of wheel-running activity in ratsPhysiology & Behavior, Vol. 55, No. 6The suprachiasmatic nucleus controls the circadian rhythm of heart rate via the sympathetic nervous systemPhysiology & Behavior, Vol. 55, No. 6Anterograde neuronal tracing of retinohypothalamic projections in the hamster — Possible innervation of substance P-containing neurons in the suprachiasmatic nucleusNeuroscience Letters, Vol. 174, No. 1Serotonin depletion by p-chlorophenylalanine decreases VIP mRNA in the suprachiasmatic nucleusNeuroscience Letters, Vol. 174, No. 1Central inhibition of nitric oxide synthase attenuates water intake but does not alter enhanced glucose utilization in the hypothalamo-neurohypophysial system of dehydrated ratsNeuroscience Letters, Vol. 173, No. 1-2Responses of rat suprachiasmatic nucleus neurons to substance P and glutamate in vitroBrain Research, Vol. 642, No. 1-2The NMDA antagonist MK-801 blocks light effect on melatonin receptor density in rat suprachiasmatic nucleiNeuroscience Letters, Vol. 171, No. 1-2Daily variations in melatonin receptor density of rat pars tuberalis and suprachiasmatic nuclei are distinctly regulatedBrain Research, Vol. 641, No. 1A new surgical approach to the ram suprachiasmatic nucleiJournal of Neuroscience Methods, Vol. 51, No. 2Substance P-like immunoreactivity in the hypothalamic suprachiasmatic nucleus of Phodopus sungorus — relation to daytime, photoperiod, sex and ageBrain Research, Vol. 638, No. 1-2Modulation of light-induced C-Fos expression in the suprachiasmatic nuclei by 5-HT1A receptor agonistsBrain Research, Vol. 638, No. 1-2Re‐entrainment of the Rabbit's circadian food intake pattern after inversion of 24‐hr sawtooth illuminations and standard light‐dark alternations22 September 2008 | Biological Rhythm Research, Vol. 25, No. 1Fever of unknown origin: due toC. albicans or other fungi acting on the hypothalamus?Brain Research, Vol. 635, No. 1-2Trypanosoma brucei and the nervous systemTrends in Neurosciences, Vol. 17, No. 8Marginal topography of neurons expressing the substance P receptor in the rat suprachiasmatic nucleusMolecular Brain Research, Vol. 21, No. 1-2Effect of sympathetic denervation of the pineal gland on maternal co-ordination of the circadian rhythm of α-amylase in parotid gland from young ratsArchives of Oral Biology, Vol. 38, No. 12Retinohypothalamic tract development in the hamster and ratDevelopmental Brain Research, Vol. 76, No. 2Fos protein expression in the circadian clock is not associated with phase shifts induced by a nonphotic stimulus, triazolamNeuroscience Letters, Vol. 164, No. 1-2Diurnal and Seasonal Rhythms of Neuronal Activity in the Suprachiasmatic Nucleus of Humans29 June 2016 | Journal of Biological Rhythms, Vol. 8, No. 4Diurnal variations of serotonin and dopamine levels in discrete brain regions of Syrian hamsters and their modification by chronic clorgyline treatmentBrain Research, Vol. 627, No. 1Vasopressin deficiency and circadian rhythms during food-restriction stressPeptides, Vol. 14, No. 6Spatial and temporal aspects of spinal cord and brainstem activation in the formalin pain modelProgress in Neurobiology, Vol. 41, No. 5Lesions of the suprachiasmatic nucleus do not disturb sexual orientation of the adult male ratBrain Research, Vol. 624, No. 1-2Circadian rhythms of food and water intake and urine excretion in diabetic ratsPhysiology & Behavior, Vol. 54, No. 4Serotonergic inhibition of light-induced fos protein expression and extracellular glutamate in the suprachiasmatic nucleiBrain Research, Vol. 621, No. 2Circadian phase-shifts induced by chlordiazepoxide without increased locomotor activityBrain Research, Vol. 622, No. 1-2Heavy water lengthens the period of free-running rhythms in lesioned hamsters bearing SCN graftsPhysiology & Behavior, Vol. 54, No. 3A novel adenylyl cyclase-activating serotonin receptor (5-HT7) implicated in the regulation of mammalian circadian rhythmsNeuron, Vol. 11, No. 3Suprachiasmatic circadian pacemaker of rat shows two windows of sensitivity to neuropeptide Y in vitroBrain Research, Vol. 620, No. 2The geniculohypothalamic pathway in a congenitally anophthalmic mouseBrain Research, Vol. 618, No. 2Substance P in the suprachiasmatic nucleus of the rat: an immunohistochemical and in situ hybridization studyHistochemistry, Vol. 100, No. 1Histamine phase shifts the circadian clock in a manner similar to lightBrain Research, Vol. 613, No. 1A cholinergic antagonist, mecamylamine, blocks light-induced Fos immunoreactivity in specific regions of the hamster suprachiasmatic nucleusBrain Research, Vol. 615, No. 1Photic induction and circadian expression of Fos-like protein. Immunohistochemical study in the retina and suprachiasmatic nuclei of hamsterBrain Research, Vol. 612, No. 1-2The effects of aging on diurnal water intake and melatonin binding in the suprachiasmatic nucleusNeuroscience Letters, Vol. 154, No. 1-2Differences in the retinohypothalamic tract in albino lewis versus brown norway rat strainsNeuroscience, Vol. 54, No. 1Neurohypophysial peptides in the human hypothalamus in relation to development, sexual differentiation, aging and diseaseRegulatory Peptides, Vol. 45, No. 1-2Annual variations in the vasopressin neuron population of the human suprachiasmatic nucleusNeuroscience, Vol. 53, No. 4Rod outer segment disk shedding in rats with lesions of the suprachiasmatic nucleusBrain Research, Vol. 605, No. 2No triazolam-induced expression of Fos protein in raphe nuclei of the male Syrian hamsterBrain Research, Vol. 602, No. 1A phase-response curve to the benzodiazepine chlordiazepoxide and the effect of geniculo-hypothalamic tract ablationPhysiology & Behavior, Vol. 53, No. 2Age of donor influences ability of suprachiasmatic nucleus grafts to restore circadian rhythmicityDevelopmental Brain Research, Vol. 71, No. 1Reduced increase in plasma renin activity on water-deprivation in blind hereditary microphthalmic ratsNeuroscience Letters, Vol. 149, No. 2Diurnal changes of GABA turnover rate in brain and pineal gland of Syrian hamstersBrain Research Bulletin, Vol. 31, No. 6The relation between light-induced discharge in the suprachiasmatic nucleus and phase shifts of hamster circadian rhythmsBrain Research, Vol. 598, No. 1-2Stimulation of the hamster ventral lateral geniculate nucleus induces Fos-like immunoreactivity in suprachiasmatic nucleus cellsNeuroscience Letters, Vol. 148, No. 1-2Impact of photoperiod and melatonin on reproduction in small mammalsAnimal Reproduction Science, Vol. 30, No. 1-3Ontogeny of the pineal melatonin rhythm and implications for reproductive development in domestic ruminantsAnimal Reproduction Science, Vol. 30, No. 1-3Behavioral Effects of Neural Transplantation22 June 2017 | Cell Transplantation, Vol. 1, No. 6Circadian and light-induced expression of immediate early gene mRNAs in the rat suprachiasmatic nucleusMolecular Brain Research, Vol. 15, No. 3-4Transforming growth factor-α gene expression in the hypothalamus is developmentally regulated and linked to sexual maturationNeuron, Vol. 9, No. 4Non-photic phase shifting of the circadian activity rhythm of Syrian hamsters: the relative potency of arousal and melatoninBrain Research, Vol. 591, No. 1τ and ubiquitin in the human hypothalamus in aging and Alzheimer's diseaseBrain Research, Vol. 590, No. 1-2Effect of orbital enucleation on glucose homeostasis and morphology of the suprachiasmatic nucleusBrain Research, Vol. 589, No. 2A neurophysiological study of a lithium-sensitive phosphoinositide system in the hamster suprachiasmatic (SCN) biological clock in vitroNeuroscience Letters, Vol. 144, No. 1-2Entrainment of the rat circadian clock controlling the pineal N-acetyltransferase rhythm depends on photoperiodBrain Research, Vol. 584, No. 1-2Blocking NMDA receptors or nitric oxide production disrupts light transmission to the suprachiasmatic nucleusBrain Research, Vol. 586, No. 2Circadian variation in photic regulation of immediate-early gene mRNAs in rat suprachiasmatic nucleus cellsMolecular Brain Research, Vol. 14, No. 1-2Seasonal and state-dependent changes in brain TRH receptors in hibernating ground squirrelsBrain Research Bulletin, Vol. 28, No. 6Different populations of cells in the suprachiasmatic nuclei express c-fos in association with light-induced phase delays and advances of the free-running activity rhythm in hamstersBrain Research, Vol. 579, No. 1Vasopressin-containing neurons of the suprachiasmatic nuclei inhibit corticosterone releaseBrain Research, Vol. 580, No. 1-2Morphological and functional development of the suprachiasmatic nucleus in transplanted fetal hypothalamusBrain Research, Vol. 580, No. 1-2Seasonal changes in the suprachiasmatic nucleus of manNeuroscience Letters, Vol. 139, No. 2Entrained Body Temperature Rhythms Are Similar in Mild Alzheimer's Disease, Geriatric Onset Depression, and Normal Aging2 September 2016 | Topics in geriatrics, Vol. 5, No. 2The circadian rhythm of body temperaturePhysiology & Behavior, Vol. 51, No
更多