Evidence that ventilatory rhythmogenesis in the frog involves two distinct neuronal oscillators.
about
Breathing: rhythmicity, plasticity, chemosensitivityRetrotrapezoid nucleus and parafacial respiratory group.Looking for inspiration: new perspectives on respiratory rhythm.Degeneracy as a substrate for respiratory regulation.Effects of maturation and acidosis on the chaos-like complexity of the neural respiratory output in the isolated brainstem of the tadpole, Rana esculenta.Serotonergic modulation of respiratory rhythmogenesis and central chemoreception.Respiratory neuron characterization reveals intrinsic bursting properties in isolated adult turtle brainstems (Trachemys scripta).Functional organization of respiratory neurones: a brief review of current questions and speculations.Role of glutamate and substance P in the amphibian respiratory network during development.Lung respiratory rhythm and pattern generation in the bullfrog: role of neurokinin-1 and mu-opioid receptorsEvolution of lung breathing from a lungless primitive vertebrate.Adaptive trends in respiratory control: a comparative perspective.Neural control of the upper airway: integrative physiological mechanisms and relevance for sleep disordered breathing.Opioid-induced quantal slowing reveals dual networks for respiratory rhythm generationThree brainstem areas involved in respiratory rhythm generation in bullfrogs.GABAergic and glycinergic inputs modulate rhythmogenic mechanisms in the lamprey respiratory network.Localization of essential rhombomeres for respiratory rhythm generation in bullfrog tadpoles using a binary search algorithm: Rhombomere 7 is essential for the gill rhythm and suppresses lung bursts before metamorphosis.Role of synaptic inhibition in turtle respiratory rhythm generation.Excitatory and inhibitory effects of tricaine (MS-222) on fictive breathing in isolated bullfrog brain stem.Ontogeny of central CO2 chemoreception: chemosensitivity in the ventral medulla of developing bullfrogs.Point:Counterpoint: The parafacial respiratory group (pFRG)/pre-Botzinger complex (preBotC) is the primary site of respiratory rhythm generation in the mammal. Point: the PFRG is the primary site of respiratory rhythm generation in the mammal.Role of midbrain in the control of breathing in anuran amphibians.Locus coeruleus is a central chemoreceptive site in toads.
P2860
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P2860
Evidence that ventilatory rhythmogenesis in the frog involves two distinct neuronal oscillators.
description
2002 nî lūn-bûn
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2002年の論文
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2002年学术文章
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name
Evidence that ventilatory rhyt ...... distinct neuronal oscillators.
@en
Evidence that ventilatory rhyt ...... distinct neuronal oscillators.
@nl
type
label
Evidence that ventilatory rhyt ...... distinct neuronal oscillators.
@en
Evidence that ventilatory rhyt ...... distinct neuronal oscillators.
@nl
prefLabel
Evidence that ventilatory rhyt ...... distinct neuronal oscillators.
@en
Evidence that ventilatory rhyt ...... distinct neuronal oscillators.
@nl
P2093
P2860
P1476
Evidence that ventilatory rhyt ...... distinct neuronal oscillators
@en
P2093
J E Remmers
K Vasilakos
M B Harris
P2860
P304
P356
10.1113/JPHYSIOL.2001.013512
P407
P50
P577
2002-04-01T00:00:00Z