Response of neurons in the solitary tract nucleus, area postrema and lateral parabrachial nucleus to gastric load of hypertonic saline.
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Summary
C-Fos was induced in the solitary tract nucleus, area postrema (AP) and lateral parabrachial nucleus (LPB) by the intragastric injection of hypertonic saline and at least a part of these Fos-LI is considered to have been induced by the activation of the visceral osmoreceptors.
- Type
- article
- Published
- 1993-08-06
- Cited by
- 83
- References
- 23
- OpenAlex
- https://openalex.org/W2014622494
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:45368648
Keywords
Area postrema, Parabrachial Nucleus, Solitary tract, Hypertonic saline, Lateral parabrachial nucleus
References
- Systemic morphine suppresses noxious stimulus-evoked Fos protein-like immunoreactivity in the rat spinal cord
- Afferent projections to the dorsal motor nucleus of the vagus.
- Projection of nucleus tractus solitarius units influenced by hepatoportal afferent signal to parabrachial nucleus.
- Fos‐like immunoreactivity in the brain of homozygous diabetes insipidus brattleboro and normal long‐evans rats
- Induction of c-fos-like protein in spinal cord neurons following sensory stimulation
- Osmosensitive vagal receptors in the small intestine of the cat.
- Effects of portal infusion of hypertonic saline on neurons within the dorsal motor nucleus of the vagus in rats
- Projections from the nucleus of the solitary tract in the rat.
- Anatomical evidence of direct projections from the nucleus of the solitary tract to the hypothalamus, amygdala, and other forebrain structures in the rat.
- Direct hypothalamo-autonomic connections.
- Fos-like expression and nuclear size in osmotically stimulated supraoptic nucleus neurons.
- Central distribution of subdiaphragmatic vagal branches in the rat
- c-fos may code for a common transcription factor within the hypothalamic neural circuits involved in osmoregulation.
- c-Fos protein expression in the rat subfornical organ following osmotic stimulation.
- Role of ion flux in the control of c-fos expression
- Expression of c-fos protein by immunohistochemically identified oxytocin neurons in the rat hypothalamus upon osmotic stimulation.
- Chemosensitive neurons within the area postrema of the rat.
- The regulation and function of c-fos and other immediate early genes in the nervous system.
- Expression of C‐fos‐like protein as a marker for neuronal activity following noxious stimulation in the rat
- Rat brainstem neurons responsive to changes in portal blood sodium concentration.
Cited by
- Comparison of c-fos-like immunoreactivity in the brainstem following intraoral and intragastric infusions of chemical solutions in rats.
- Brain serotonin blockade and paradoxical salt intake in rats.
- EFEITO ANTINATRIOREXIGÊNICO E ANSIOLÍTICO DA ADMINISTRAÇÃO INTRACEREBRAL DE CARVACROL EM RATOS: INFLUÊNCIA DAS VIAS SEROTONINÉRGICAS, ADRENÉRGICAS E POSSÍVEIS ÁREAS CEREBRAIS ENVOLVIDAS
- Efectos comportamentales de la activación del complejo parabraquial troncoencefálico: relevancia del subnúcleo lateral externo en el aprendizaje espacial y gustativo inducido por estimulación
- The angiotensinogen gene is expressed in both astrocytes and neurons in murine central nervous system.
- Lateral parabrachial lesions impair taste aversion learning induced by blood-borne visceral stimuli.
- A neural set point for the long-term control of arterial pressure: beyond the arterial baroreceptor reflex.
- Hypotension-induced expression of the c-fos gene in the medulla oblongata of piglets.
- Changes in taste reactivity to intra-oral hypertonic NaCl after lateral parabrachial injections of an α2-adrenergic receptor agonist.
- Sodium intake by hyperosmotic rats treated with a GABA(A) receptor agonist into the lateral parabrachial nucleus.
- Facilitation of sodium intake by combining noradrenaline into the lateral parabrachial nucleus with prazosin peripherally.
- Early osmoregulatory stimulation of neurohypophyseal hormone secretion and thirst after gastric NaCl loads.
- The role of the medial-external subnucleus of the medial parabrachial nucleus in hypertonic NaCl-induced concurrent and delayed-sequential flavor avoidance learning
- Area Postrema Projects to FoxP2 neurons of the Pre-Locus Coeruleus and Parabrachial Nuclei: Brainstem Sites Implicated in Sodium Appetite Regulation
- Visceral afferent pathways to the thalamus and olfactory tubercle: behavioral implications.
- Role of the lateral parabrachial nucleus in the control of sodium appetite.
- Oxytocinergic and serotonergic systems involvement in sodium intake regulation: satiety or hypertonicity markers?
- The role of the lateral parabrachial nuclei in concurrent and sequential taste aversion learning in rats
- c-Fos-like immunoreactivity in the brainstem following gastric loads of various chemical solutions in rats.
- Effects of insulin and leptin in the ventral tegmental area and arcuate hypothalamic nucleus on food intake and brain reward function in female rats
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