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2005, 1. Aufl., Advances in Anatomy Embryology and Cell Biology, ISBN 9783540255000, Volume 179, 86
This volume of Advances in Anatomy, Embryology and Cell Biology is based on material assembled by Dr. Jaap H.R. Schoen who was one of the few neuroanatomists... 
Neurosciences | Biomedicine | Medulla Oblongata - pathology | Spinal Cord - anatomy & histology | Spinal Cord - pathology | Humans | Medulla Oblongata - anatomy & histology | Spinal cord | Neuroanatomy | Central nervous system
eBook
Brain Research, ISSN 0006-8993, 2008, Volume 1227, pp. 128 - 141
Abstract Rats can anticipate a daily mealtime when they are maintained on restricted feeding schedules (RFS). Neural substrates of the food-entrainable... 
Neurology | FEO, food-entrainable oscillator | AHA, anterior hypothalamic area | LEO, light-entrainable oscillator | PVTp, paraventricular thalamic nucleus, posterior part | Restricted feeding schedule | PVHp, paraventricular hypothalamic nucleus, parvocellular part | SuM, supramammillary nucleus | PVH, paraventricular hypothalamic nucleus | HPA, hypothalamic–pituitary adrenal axis | CeA, central nucleus of amygdala | DLG, dorsal lateral geniculate nucleus | PVT, paraventricular thalamic nucleus | Food-entrainable oscillator | AD, anterodorsal thalamic nucleus | SG, suprageniculate thalamic nucleus | BLA, basolateral amygdala | LHA, lateral hypothalamic area | Food anticipation | DMHv, dorsomedial hypothalamic nucleus, ventral part | DTg, dorsal tegmental nucleus | SON, supraoptic nucleus | AH/SHi, anterior hippocampal continuation and septohippocampal nucleus | PVTa, paraventricular thalamic nucleus, anterior part | DMH, dorsomedial hypothalamic nucleus | PVHam, paraventricular hypothalamic nucleus, anterior magnocellular part | c- fos | CRF, corticotropin releasing factor | FAA, food-anticipatory activity | Neuronal activation | ACh, acetylcholine | VMH, ventromedial hypothalamic nucleus | LM, lateral mammillary nucleus | ACTH, adrenocorticotropic hormone | NTS, nucleus of the solitary tract | PB, parabrachial nuclei | CRF | SCN, suprachiasmatic nucleus | RFS, restricted feeding schedules | PVHmm, paraventricular hypothalamic nucleus, medial magnocellular part | SuG, superficial gray layer of the superior colliculus | DMHc, dorsomedial hypothalamic nucleus, compact part | HPA, hypothalamic-pituitary adrenal axis | c-fos | ENHANCED ACETYLCHOLINE-RELEASE | restricted feeding schedule | DORSOMEDIAL HYPOTHALAMIC NUCLEUS | CIRCADIAN-RHYTHMS | food-entrainable oscillator | HORMONE MESSENGER-RNA | NEUROSCIENCES | NEUROSECRETORY NEURONS | PLASMA-CORTICOSTERONE | ZUCKER RATS | PARAVENTRICULAR THALAMIC NUCLEUS | neuronal activation | AGED RATS | food anticipation | C-FOS EXPRESSION | Paraventricular Hypothalamic Nucleus - physiology | Insulin - physiology | Rats, Wistar | Dorsomedial Hypothalamic Nucleus - physiology | Male | Insulin - blood | RNA, Messenger - metabolism | Brain - physiology | Eating - physiology | Brain - metabolism | Paraventricular Hypothalamic Nucleus - cytology | In Situ Hybridization | Neurons - physiology | Corticotropin-Releasing Hormone - genetics | Neurons - metabolism | Corticosterone - blood | Gene Expression | Enzyme-Linked Immunosorbent Assay | Dorsomedial Hypothalamic Nucleus - cytology | RNA, Messenger - genetics | Amygdala - metabolism | Proto-Oncogene Proteins c-fos - metabolism | Rats | Amygdala - cytology | Dorsomedial Hypothalamic Nucleus - metabolism | Hippocampus - cytology | Corticotropin-Releasing Hormone - metabolism | Feeding Behavior - physiology | Food Deprivation - physiology | Hippocampus - metabolism | Animals | Glucose - physiology | Paraventricular Hypothalamic Nucleus - metabolism | Proto-Oncogene Proteins c-fos - genetics | Corticosterone - metabolism | Body Weight - physiology | Glucose - analysis | Hippocampus - physiology | Amygdala - physiology
Journal Article
2007, Frontiers in neuroscience, ISBN 9780849342004, Volume 31, xv, 158
Book
Current Biology, ISSN 0960-9822, 10/2012, Volume 22, Issue 20, pp. 1881 - 1890
Journal Article
Neuroscience, ISSN 0306-4522, 2006, Volume 140, Issue 2, pp. 577 - 595
In the last 15 years a role has been ascribed for the medullary dorsal reticular nucleus as a supraspinal pain modulating area. The medullary dorsal reticular... 
ac/aca | cerebral peduncle basal part | APT | superior colliculus | Phaseolus vulgaris-leucoagglutinin | paracentral thalamic nucleus | central amygdaloid nuclei | external cuneate nucleus | locus coeruleus | longitudinal fasciculus of the pons | CTb | paraventricular thalamic nuclei | hypoglossal nucleus | lateral ventricle | scp | VLH/VMH | BST | RPa/ROb | Kölliker-Fuse nucleus | MCPO | Arc | LGP | dorsal raphe | lfp | VPL/VPM | pain pathways | BDA | PHA-L | ABC | supraspinal circuitry | zona incerta dorsal/ventral part | nucleus of the fields of Forel | pedunculopontine tegmental nucleus | centrolateral thalamic nucleus | medial lemniscus | vestibular nuclei | pontine reticular nucleus caudal/oral/ventral part | nuclei of the lateral lemniscus | A5/A7 | VTA/R | caudate putamen | anterior hypothalamic area | reuniens thalamic nucleus | lateral (dentate) cerebellar nucleus | brain efferents | IRt | ventrolateral/ventromedial hypothalamic nuclei | Sp5 caudal part | mesencephalic trigeminal nucleus | PAG | periaqueductal gray | IO/IOM | dorsal motor nucleus of vagus | RVM | subparafascicular thalamic nucleus | basolateral amygdaloid nucleus, anterior part | ICj | Po/PoT | cuneate nucleus | 4th ventricle | icp | lateral preoptic nuclei | PBS | mlf | DPGi | reticular thalamic nucleus | ventral reticular nucleus | Mo5 | opt | bed nucleus of the stria terminalis | PPTg | prepositus nucleus | medial longitudinal fasciculus | preoptic nuclei | lateral globus pallidus | medial septal nucleus | oculomotor nucleus | HDB | ventrolateral thalamic nucleus | Pr5VL | interstitial nucleus of the medial longitudinal fasciculus | gigantocellular reticular nucleus alpha part | periventricular hypothalamic nucleus | inferior colliculus | parvicellular reticular nucleus | paraventricular hypothalamic nuclei | paragigantocellular nucleus | VLPAG | rhomboid thalamic nucleus | nucleus of the posterior commisure | medial amygdaloid nuclei | substantia nigra compact part | central canal | superior cerebellar peduncle | dorsal reticular nucleus | avidin–biotin complex | islands of Calleja | optic chiasm | fornix | mammillothalamic tract | ventromedial thalamic nucleus | dorsal tegmental nucleus | inferior cerebellar peduncle | nucleus of the horizontal limb of the diagonal band | VLMlat | MPB | gigantocellular reticular nucleus ventral part | PVN | spinal trigeminal nucleus | MPO | dorsal periaqueductal gray | lateral mammillary nucleus | nucleus of Darkschewitsch | CnF | raphe pallidus/raphe obscurus | ethmoid thalamic nucleus | anterior pretectal nucleus | deep mesencephalic nucleus | medial globus pallidus | red nucleus | nucleus tractus solitarius | rostral ventromedial medulla | spinal trigeminal nucleus interpolar part | indusium griseum | magnocellular preoptic nucleus | medial preoptic nuclei | biotinylated dextran | prerubral field | PCom | BLA | VRt | lateral parabrachial nuclei | LPB | LS/LSI | DpMe | 3rd ventricle | saline phosphate buffer | SNC | LPO | NTS | area postrema | PGi | substantia nigra reticular part | The nomenclature and abbreviations used to designate brain nuclei and fiber tracts are in accordance with those used by Paxinos and Watson or result from a simplification of it, except for a few exceptions assigned with (). | VDB | SNR | gigantocellular reticular nucleus | lateral reticular nucleus | Sp5 | pontine nuclei | motor trigeminal nucleus | medial geniculate nuclei | substantia nigra | parafascicular thalamic nucleus | optic tract | anterior commissure/anterior part | lateral paragigantocellular nucleus | substantia innominata | nucleus of the vertical limb of the diagonal band | principal sensory trigeminal nucleus, ventrolateral part | Sylvius aqueduct | Eth | Me5 | interposed cerebellar nucleus | GiA | Lat | lateral lemniscus | SPF | ventral pallidum | inferior olive/medial nucleus | RMg | DPAG | GiV | ECu | endopiriform nuclei | globus pallidus | medial parabrachial nucleus | cholera toxin subunit B | amygdaloid nuclei | LPGi | DRt | CPu | Amy | interpeduncular nuclei | posterior thalamic nucleus/triangular part | intermediate reticular nucleus | LRt | PCRt | lateral septal nuclei/intermediate part | lateral portion of the caudal ventrolateral medulla | 0.1 M saline phosphate buffer containing 0.3% Triton X-100 | ZID/ZIV | central medial thalamic nucleus | IMLF | internal capsule | lateral hypothalamus | pyramidal tract/decussation | Sp5C | fasciculus retroflexus | Int | parabrachial nuclei | ventral tegmental area/rostral part | DTg | Sp5I | ventrolateral periaqueductal gray | cuneiform nucleus | gracile nucleus | ventral posterolateral/posteromedial thalamic nucleus | facial nucleus | PnC/PnO/PnV | arcuate hypothalamic nuclei | ventral anterior thalamic nucleus | posterior hypothalamic area | PBST | A5/A7 noradrenaline cells | MGP | medullary reticular formation | dorsal paragigantocellular nucleus | raphe magnus nucleus | EFFERENT PROJECTIONS | PHASEOLUS-VULGARIS-LEUKOAGGLUTININ | TRACTUS-SOLITARIUS | HETEROTOPIC NOCICEPTIVE INFORMATION | SPINAL-CORD | ORAL MOTOR NUCLEI | NEUROSCIENCES | AFFERENT-PROJECTIONS | ADJACENT CUNEATE NUCLEUS | STEM MULTISYNAPTIC CONNECTIONS | CAUDAL VENTROLATERAL MEDULLA | Periaqueductal Gray - cytology | Rats, Wistar | Reticular Formation - physiology | Nociceptors - physiology | Male | Axons - physiology | Presynaptic Terminals - ultrastructure | Neural Pathways - physiology | Neural Inhibition - physiology | Medulla Oblongata - cytology | Dextrans | Thalamus - physiology | Axons - ultrastructure | Functional Laterality - physiology | Medulla Oblongata - physiology | Rats | Axonal Transport - physiology | Presynaptic Terminals - physiology | Animals | Reticular Formation - cytology | Pain - physiopathology | Neural Pathways - cytology | Cholera Toxin | Periaqueductal Gray - physiology | Thalamus - cytology | Biotin - analogs & derivatives
Journal Article
Journal of Endocrinology, ISSN 0022-0795, 2016, Volume 231, Issue 2, pp. 167 - 180
Water deprivation (WD) induces changes in plasma volume and osmolality, which in turn activate several responses, including thirst, the activation of the... 
Oestradiol | Water deprivation | Oxytocin | Vasopressin | Angiotensin | SUPRAOPTIC NUCLEUS | oxytocin | OXYTOCIN MESSENGER-RNA | VASOPRESSIN GENE-EXPRESSION | MEDIAN PREOPTIC NUCLEUS | vasopressin | oestradiol | GONADAL-STEROID MODULATION | SUBFORNICAL ORGAN | FOS IMMUNOREACTIVITY | water deprivation | ESTROGEN-RECEPTOR | OSMOTIC STIMULATION | FEMALE RATS | ENDOCRINOLOGY & METABOLISM | angiotensin | Estrogen Replacement Therapy | Fluid Therapy | Nerve Tissue Proteins - secretion | Neurons - pathology | Ovariectomy - adverse effects | Rats, Wistar | Preoptic Area - drug effects | Supraoptic Nucleus - metabolism | Dehydration - therapy | Water-Electrolyte Imbalance - blood | Water-Electrolyte Imbalance - etiology | Vestibular Nucleus, Lateral - drug effects | Preoptic Area - metabolism | Supraoptic Nucleus - drug effects | Arginine Vasopressin - analysis | Estrogens - therapeutic use | Subfornical Organ - drug effects | Preoptic Area - pathology | Behavior, Animal - drug effects | Female | Neurons - secretion | Dehydration - physiopathology | Neurons - metabolism | Neurons - drug effects | Arginine Vasopressin - secretion | Subfornical Organ - metabolism | Estradiol - therapeutic use | Subfornical Organ - pathology | Vestibular Nucleus, Lateral - pathology | Arginine Vasopressin - agonists | Water-Electrolyte Imbalance - prevention & control | Supraoptic Nucleus - pathology | Nerve Tissue Proteins - genetics | Preoptic Area - secretion | Gene Expression Regulation - drug effects | Nerve Tissue Proteins - metabolism | Paraventricular Hypothalamic Nucleus - drug effects | Subfornical Organ - secretion | Animals | Paraventricular Hypothalamic Nucleus - metabolism | Paraventricular Hypothalamic Nucleus - secretion | Water-Electrolyte Imbalance - physiopathology | Vestibular Nucleus, Lateral - secretion | Drinking - drug effects | Vestibular Nucleus, Lateral - metabolism | Supraoptic Nucleus - secretion | Paraventricular Hypothalamic Nucleus - pathology
Journal Article
Neuroscience, ISSN 0306-4522, 2017, Volume 349, pp. 128 - 143
Highlights • Thalamocortical projections from ATN are ipsilateral with the exception of a restricted bilateral AV projection to RSC. • Corticothalamic... 
Neurology | Corticothalamic | Thalamus | Thalamocortical | Contralateral | Interhemispheric | Hippocampus | FREELY MOVING RATS | RETROGRADE AXONAL-TRANSPORT | LATERODORSAL NUCLEUS | CORTICOTHALAMIC PROJECTIONS | EFFERENT CONNECTIONS | HORSERADISH-PEROXIDASE | NEUROSCIENCES | DISTINGUISHING DRIVERS | CORTICAL PROJECTIONS | RETROSPLENIAL CORTEX | HEAD-DIRECTION | Lateral Thalamic Nuclei - physiology | Animals | Brain Mapping | Rats | Cerebral Cortex - physiology | Gyrus Cinguli - physiology | Male | Hippocampus - physiology | Neural Pathways - physiology | Thalamic Nuclei - physiology | Neurosciences | Index Medicus | LP, lateral posterior thalamic nucleus | a-p, anterior-posterior | V2, secondary visual cortex | VL, ventrolateral thalamic nucleus | LD, laterodorsal thalamic nucleus | AD, anterodorsal thalamic nucleus | DY, diamidino yellow | IAM, interanteromedial thalamic nucleus | PL, prelimbic cortex | RSD, dysgranular retrosplenial cortex | PT, parataenial thalamic nucleus | RSC, retrosplenial cortex | PoS, postsubiculum | WGA-HRP, horseradish peroxidase-conjugated wheat germ agglutinin | Cg, cingulate cortex | FG, fluorogold tracer | SUB, subiculum | VA, ventral anterior thalamic nucleus | MD, mediodorsal thalamic nucleus | Sm, stria medullaris of the thalamus | V1, primary visual cortex | BDA, biotinylated dextran amine | AV, anteroventral thalamic nucleus | HPC, hippocampus | FB, fast blue tracer | IAD, interanterodorsal thalamic nucleus | RSG, granular retrosplenial cortex | M2, secondary motor cortex | AM, anteromedial thalamic nucleus
Journal Article
Journal Article
PLoS ONE, ISSN 1932-6203, 04/2017, Volume 12, Issue 4, p. e0176279
Despite rhythmic expression of clock genes being found throughout the central nervous system, very little is known about their function outside of the... 
STRIA TERMINALIS | OLFACTORY-BULB | PARAVENTRICULAR NUCLEUS | SUPRACHIASMATIC NUCLEUS | MULTIDISCIPLINARY SCIENCES | CLOCK PROTEIN | HYPOTHALAMIC ARCUATE NUCLEUS | SIZED SPINY NEURONS | DOPAMINE-RECEPTORS | OVAL NUCLEUS | BED NUCLEUS | Immunohistochemistry | Amygdala - anatomy & histology | Rats, Wistar | Enkephalins - metabolism | Nucleus Accumbens - metabolism | Male | Circadian Clocks - genetics | Olfactory Bulb - metabolism | Septal Nuclei - anatomy & histology | Corpus Striatum - metabolism | Enkephalins - genetics | Septal Nuclei - metabolism | Arcuate Nucleus of Hypothalamus - anatomy & histology | Period Circadian Proteins - genetics | Paraventricular Hypothalamic Nucleus - anatomy & histology | Habenula - anatomy & histology | Olfactory Bulb - anatomy & histology | Habenula - metabolism | ARNTL Transcription Factors - genetics | Gene Expression | Corpus Striatum - anatomy & histology | Arcuate Nucleus of Hypothalamus - metabolism | Amygdala - metabolism | ARNTL Transcription Factors - metabolism | Rats | Nucleus Accumbens - anatomy & histology | Animals | Period Circadian Proteins - metabolism | Substance P - genetics | Paraventricular Hypothalamic Nucleus - metabolism | Brain Mapping | Substance P - metabolism | Proteins | Circadian rhythms | Neurons | Analysis | Neuropeptides | Research | Gene expression | Health aspects | Suprachiasmatic nucleus | Brain | Neurosciences | Genes | Neurobiology | Central nervous system | Biology | Hormones | Hypothalamus | Confocal | Nuclei | Rodents | Thalamus | Localization | Food | Subpopulations | Dopamine | Circadian rhythm | Mammals | Studies | Microscopy | Immunofluorescence
Journal Article
Neuroscience, ISSN 0306-4522, 2013, Volume 236, pp. 345 - 372
Graphical abstract Highlights ► The distribution of GABAA receptor subunits is highly heterogeneous. ► The distribution of mRNAs corresponds to that of... 
Neurology | mouse brain | immunohistochemistry | GABAA receptor subunits | in situ hybridization | Immunohistochemistry | GABA | Mouse brain | receptor subunits | In situ hybridization | Species Specificity | Mice, Inbred C57BL | RNA, Messenger - analysis | Rats | Male | Brain - metabolism | RNA, Messenger - biosynthesis | Animals | In Situ Hybridization | Mice | Receptors, GABA-A - analysis | Receptors, GABA-A - biosynthesis | STT, spinal trigeminal tract | DS, dorsal subiculum | Ent, entorhinal cortex | CA, cornu ammonis | EP, entopeduncular nucleus | PV, paraventricular thalamic nucleus | St, striatum | sr, stratum radiatum | Mol, molecular layer cerebellum | DLG, dorsal lateral geniculate nucleus | LD, laterodorsal thalamic nucleus | DG, dentate gyrus | MA, medial amygdaloid nucleus | PaS, parasubiculum | CEA, central amygdala | VS, ventral subiculum | BLA, basolateral amygdala | VPM, ventral posteromedial thalamic nucleus | IHC, immunohistochemistry | GP, globus pallidus | mRNA, messenger ribonucleic acid | VPL, ventral posterolateral thalamic nucleus | h, hilus | Hb, habenula | TBS, Tris–HCl-buffered saline | Rt, reticular thalamic nucleus | Mi, mitral cell layer bulbus olfactorius | I, intercalated nucleus | EPl, external plexiform layer | so, stratum oriens | Gr, granule cell layer cerebellum | ISH, in situ hybridization | gr, granule cell layer bulbus olfactorius | PrS, presubiculum | Gl, glomerular layer bulbus olfactorius | ml, molecular layer of dentate gyrus | PG, pregeniculate nucleus
Journal Article