Search results for "Suprachiasmatic Nucleus"

showing 10 items of 24 documents

Anterograde tracing of retinohypothalamic afferents with Fluoro-Gold

1997

The anterograde neuronal tracing properties of Fluoro-Gold (FG) were characterized in this study by its ability to label the retinohypothalamic tract (RHT) upon pressure injection of the substance into the vitrous body of the eye in the Djungarian hamster, Phodopus sungorus. Tracing was compared to the anterograde neuronal transport of cholera toxin B subunit (CTB), Fast blue (FB), Phaseolous vulgaris leucoagglutinin (PHA-L) and biocytin. After survival times that ranged from 24 h to 4 weeks, a major projection was found to the bilateral hypothalamic suprachiasmatic nuclei (SCN). Labeling was also found in the anterior medial preoptic nucleus and, in relatively sparse amounts, in the latera…

MaleRetinal Ganglion CellsCholera ToxinPhodopusStilbamidinesAmidinesHypothalamusBiologyLateral geniculate nucleusRetinachemistry.chemical_compoundCricetinaeBiocytinAnimalsVisual PathwaysPhytohemagglutininsMolecular BiologyNeuronal transportFluorescent DyesHistocytochemistrySuprachiasmatic nucleusLysineGeneral NeuroscienceSuperior colliculusAnatomyMolecular biologyNeuronal tracingAnterograde tracingnervous systemchemistryFemaleSuprachiasmatic NucleusNeurology (clinical)Retinohypothalamic tractVasoactive Intestinal PeptideDevelopmental BiologyBrain Research
researchProduct

Effects of melatonin on spontaneous electrical activity of neurons in rat suprachiasmatic nuclei: an in vitro iontophoretic study.

1989

Circadian rhythms, endogenously generated in suprachiasmatic nuclei (SCN), seem to be under the direct influence of melatonin. Therefore, the effect of iontophoretically applied melatonin on electrical activity of SCN neurons was investigated in vitro. Usually, melatonin had an inhibitory effect. In the 3-h periods before (2.00-5.00 p.m.) or after (5.00-8.00 p.m.) the light-dark transition the percentage of SCN neurons sensitive to melatonin was very high (80% and 100%, respectively). However, efficacy of melatonin was low in the periods preceeding (20%) and following (33%) this 6-h time interval.

Malemedicine.medical_specialtyCentral nervous systemAction PotentialsBiologyIn Vitro TechniquesMelatoninInternal medicinemedicineAnimalsCircadian rhythmBiological PsychiatryMelatoninNeuronsIontophoresisSuprachiasmatic nucleusIontophoresisIn vitroCircadian RhythmRatsPsychiatry and Mental healthElectrophysiologyEndocrinologymedicine.anatomical_structureNeurologyHypothalamusSuprachiasmatic NucleusNeurology (clinical)medicine.drugJournal of neural transmission
researchProduct

Circadian rhythm and effects of light on cAMP content of the dwarf hamster suprachiasmatic nucleus

1998

The present study was conducted in the dwarf hamster (Phodopus sungorus) to investigate whether a circadian rhythm is present in the content of the second messenger cyclic adenosine 3',5'-monophosphate (cAMP) in the suprachiasmatic nucleus (SCN), the endogenous clock in mammals. In animals held under light/dark conditions (LD), we observed high levels at the end of the light phase and low levels during the night in frozen SCN punches. In animals held in continuous dark, a similar rhythm was seen although a second peak was present in the subjective day. In senile hamsters under LD, the decrease of cAMP levels at the light transition was not seen. These data, obtained for the first time from …

endocrine systemmedicine.medical_specialtyPhodopusPhotoperiodHamsterchemistry.chemical_compoundCricetinaeInternal medicineCyclic AMPmedicineAnimalsCyclic adenosine monophosphateCircadian rhythmbiologySuprachiasmatic nucleusGeneral Neurosciencebiology.organism_classificationAdenosineCircadian RhythmPhodopusEndocrinologychemistryLight effects on circadian rhythmHypothalamusSuprachiasmatic Nucleussense organsPhotic Stimulationmedicine.drugNeuroscience Letters
researchProduct

Fiat lux: the light became therapy. An overview on the Bright Light Therapy in Alzheimer’s Disease sleep disorders

2020

Background: A system of photosensitive retinal ganglion cells provides ‘non-visual’ information on the circadian sequences of light to the suprachiasmatic nucleus (SCN), which, as the ‘master clock’, synchronizes the chronobiological mechanisms of all the biological clocks. Damage to SCN structure alters circadian behavioral and hormonal rhythms and interferes with a regular sleep-wake pattern. Several studies have shown that, in aging and in Alzheimer’s disease (AD), circadian rhythms change their synchronization with the environment and behavior loses sync with light. Objective: The current overview aims to examine research studies showing the effect of bright light therapy (BLT) on sleep…

Sleep Wake Disorderscircadian rhythmlight boxeExacerbationPopulationPneumonia Viralbiological clockDiseaseRhythmAlzheimer DiseasemedicineSleep disorder.HumansCircadian rhythmAlzheimer’s Diseaseretinal ganglion celleducationPandemicsSleep disordereducation.field_of_studySettore M-PSI/02 - Psicobiologia E Psicologia FisiologicaSuprachiasmatic nucleusbusiness.industryGeneral NeuroscienceIntrinsically photosensitive retinal ganglion cellssuprachiasmatic nucleuCOVID-19General MedicinePhototherapymedicine.diseasePsychiatry and Mental healthClinical PsychologySunlightSuprachiasmatic NucleusGeriatrics and Gerontologybright light therapybusinessCoronavirus InfectionsNeuroscience
researchProduct

Demonstration of retinal afferents in the RCS rat, with reference to the retinohypothalamic projection and suprachiasmatic nucleus.

1995

In the Royal College of Surgeons (RCS) rat, characterized by inherited retinal dystrophy, retinal projections to the brain were studied using anterograde neuronal transport of cholera toxin B subunit upon injection into one eye. The respective immunoreactivity was found predominantly contralateral to the injection site in the lateral geniculate nucleus, superior colliculus, nucleus of the optic tract, medial terminal nucleus of the accessory optic tract, and bilateral hypothalamic suprachiasmatic nuclei. Although terminal density was somewhat reduced in dystrophic rats, the projection patterns in these animals appeared similar to those seen in their congenic controls and were comparable to …

Malemedicine.medical_specialtyCholera ToxinHistologyOptic tractHypothalamusBiologyLateral geniculate nucleusRetinaPathology and Forensic MedicineInternal medicinemedicineAnimalsNeuropeptide YNeuronal transportRetinaAfferent PathwaysSuprachiasmatic nucleusSuperior colliculusRetinal DegenerationGeniculate BodiesRats Inbred StrainsCell BiologyRatsEndocrinologymedicine.anatomical_structureHypothalamusFemaleSuprachiasmatic NucleusRetinohypothalamic tractVasoactive Intestinal PeptideCell and tissue research
researchProduct

Effects of histamine on spontaneous electrical activity of neurons in rat suprachiasmatic nucleus

1991

Abstract The hypothalamic suprachiasmatic nucleus (SCN) is thought to be a light-entrained pacemaker in mammals, inducing a wide range of endogenous circadian events. In rat brain, histaminergic (HAergic) fibres are particulary rich in the hypothalamus. This prompted an investigation of the influence of bath-applied HAergic compounds on the spontaneous electrical activity of SCN neurons, recorded extracellularly in the hypothalamic slice preparation. Cells activated by bath application of HA ( n = 28) outnumbered those inhibited by HA ( n = 6). 48% of cells tested ( n = 28) were unresponsive to HA application. HA-induced activation of SCN neurons' discharge rate could be suppressed by the H…

Malemedicine.medical_specialtyCentral nervous systemAction PotentialsBiologyNeurotransmissionHistamine receptorInternal medicinemedicineAnimalsCircadian rhythmNeuronsPyrilamineSuprachiasmatic nucleusGeneral NeuroscienceHistaminergicRats Inbred StrainsCircadian RhythmRatsElectrophysiologyEndocrinologymedicine.anatomical_structurenervous systemHypothalamusSuprachiasmatic Nucleussense organsCimetidineHistamineNeuroscience Letters
researchProduct

Anterograde tracing of retinal afferents to the tree shrew hypothalamus and raphe

2000

The anterograde neuronal transport of Cholera toxin B subunit (CTB) was used in this study to label the termination of retinal afferents in the hypothalamus of the tree shrew Tupaia belangeri. Upon pressure-injection of the substance into the vitreous body of one eye, a major projection of the retinohypothalamic tract (RHT) was found to the hypothalamic suprachiasmatic nuclei (SCN). Although the innervation pattern was bilateral, the ipsilateral SCN received a somewhat stronger projection. Labeling was also found in the supraoptic nucleus and its perinuclear zone, respectively, mainly ipsilaterally as well as in the bilateral para- and periventricular hypothalamic regions without lateral pr…

MaleCholera ToxinHypothalamusBiologySynaptic TransmissionRetinaSupraoptic nucleusAnimalsNeurons AfferentMolecular BiologyNeuronal transportRapheSuprachiasmatic nucleusGeneral NeuroscienceTupaiidaeGeniculate BodiesAnatomyAnterograde tracingHypothalamusRaphe NucleiFemaleSuprachiasmatic NucleusNeurology (clinical)Raphe nucleiSupraoptic NucleusNeuroscienceRetinohypothalamic tractDevelopmental BiologyBrain Research
researchProduct

Chronoendokinologia — Quo vadis?

2002

The present review deals with important new chronobiological results especially in the field of chronoendocrinology, shedding new light on the circadian organisation of mammals including man. In vitro studies have shown that the concept of the existence of a single circadian oscillator located in the suprachiasmatic nucleus has to be extended. Circadian oscillators have also been found to exist in the retina, islets of Langerhans, liver, lung, and fibroblasts. Another major result is the detection of a new photopigment, melanopsin, present in a subpopulation of retinal ganglion cells which are lightsensitive and project to the suprachiasmatic nucleus, acting as zeitgeber for the photic entr…

MelanopsinSuprachiasmatic nucleusCircadian clockGeneral MedicineBiologyRetinal ganglionMelatoninPineal glandmedicine.anatomical_structureZeitgebermedicinesense organsCircadian rhythmAnatomyNeuroscienceDevelopmental Biologymedicine.drugAnnals of Anatomy - Anatomischer Anzeiger
researchProduct

Plasticity of synaptic ribbons of the rat pineal gland in vitro — Minor effects of electrical stimulation

2003

Synaptic ribbons (SRs) of mammalian pinealocytes exhibit day/night changes in number and size, changes that are apparently regulated by the suprachiasmatic nucleus via postganglionic sympathetic nerve fibres. Since the neural control of SR changes is far from clear and as pinealocytes produce action potentials, we undertook to investigate whether electrical stimulation affects SR changes. Isolated rat pineal glands removed during the daytime were kept in vitro for 0, 30, 60, 90 or 120 min, with or without continuous electrical stimulation (1 mA, 1 Hz), followed by the quantification of SR profiles (SRPs) by transmission electron microscopy. SRs were categorised as to whether they lay less t…

Malemedicine.medical_specialtyNeuronal PlasticitySuprachiasmatic nucleusStimulationGeneral MedicineBiologyPlasticityPineal GlandElectric StimulationIn vitroRatsPinealocyteRats Sprague-DawleyRat Pineal GlandPineal glandmedicine.anatomical_structureEndocrinologyInternal medicineSynapsesNeuroplasticitymedicineAnimalsAnatomyDevelopmental BiologyAnnals of Anatomy - Anatomischer Anzeiger
researchProduct

Circadian Rhythm Variations and Nutrition in Children

2018

AbstractCircadian rhythms are the changes in biological processes that occur on a daily basis. Among these processes are reactions involved in metabolic homeostasis. Circadian rhythms are structured by the central clock in the suprachiasmatic nucleus of the hypothalamus via the control of melatonin expression. Circadian rhythms are also controlled by the peripheral clocks, which are intracellular mechanisms composed of the clock genes, whose expression follows a circadian pattern. Circadian rhythms are impacted by signals from the environment called zeitgebers, or time givers, which include light exposure, feeding schedule and composition, sleeping schedule and pattern, temperature, and phy…

0301 basic medicineSuprachiasmatic nucleusMetabolic homeostasisBiologyMelatoninCLOCK03 medical and health sciences030104 developmental biology0302 clinical medicineHypothalamusPediatrics Perinatology and Child HealthZeitgebermedicineSurgeryCircadian rhythmNeuroscience030217 neurology & neurosurgerymedicine.drugLight exposureJournal of Child Science
researchProduct