Asymmetric control of inspiratory and expiratory phases by excitability in the respiratory network of neonatal mice in vitro.
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Rhythmic bursting in the pre-Bötzinger complex: mechanisms and modelsLate-expiratory activity: emergence and interactions with the respiratory CpG.Robust network oscillations during mammalian respiratory rhythm generation driven by synaptic dynamics.Synaptic Depression Influences Inspiratory-Expiratory Phase Transition in Dbx1 Interneurons of the preBötzinger Complex in Neonatal Mice.Genetic control of a central pattern generator: rhythmic oromotor movement in mice is controlled by a major locus near Atp1a2.Tonic and phasic drive to medullary respiratory neurons during periodic breathing.Functional Interactions between Mammalian Respiratory Rhythmogenic and Premotor Circuitry.Sodium and calcium mechanisms of rhythmic bursting in excitatory neural networks of the pre-Bötzinger complex: a computational modelling study.Understanding the rhythm of breathing: so near, yet so far.Emergence of population bursts from simultaneous activation of small subsets of preBötzinger complex inspiratory neuronsDistinct inspiratory rhythm and pattern generating mechanisms in the preBötzinger complex.Adaptive trends in respiratory control: a comparative perspective.Facing the challenge of mammalian neural microcircuits: taking a few breaths may help.Physiological and morphological properties of Dbx1-derived respiratory neurons in the pre-Botzinger complex of neonatal mice.Outward Currents Contributing to Inspiratory Burst Termination in preBötzinger Complex Neurons of Neonatal Mice Studied in Vitro.Mechanisms Leading to Rhythm Cessation in the Respiratory PreBötzinger Complex Due to Piecewise Cumulative Neuronal Deletions(1,2,3).Glycinergic pacemaker neurons in preBötzinger complex of neonatal mouse.Synaptically activated burst-generating conductances may underlie a group-pacemaker mechanism for respiratory rhythm generation in mammals.Characteristics of breathing rate control mediated by a subregion within the pontine parabrachial complex.Asymmetric control of cycle period by the spinal locomotor rhythm generator in the adult cat.The interdependence of excitation and inhibition for the control of dynamic breathing rhythms.
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P2860
Asymmetric control of inspiratory and expiratory phases by excitability in the respiratory network of neonatal mice in vitro.
description
2009 nî lūn-bûn
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2009年の論文
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name
Asymmetric control of inspirat ...... ork of neonatal mice in vitro.
@en
Asymmetric control of inspirat ...... ork of neonatal mice in vitro.
@nl
type
label
Asymmetric control of inspirat ...... ork of neonatal mice in vitro.
@en
Asymmetric control of inspirat ...... ork of neonatal mice in vitro.
@nl
prefLabel
Asymmetric control of inspirat ...... ork of neonatal mice in vitro.
@en
Asymmetric control of inspirat ...... ork of neonatal mice in vitro.
@nl
P2860
P1476
Asymmetric control of inspirat ...... work of neonatal mice in vitro
@en
P2093
Christopher A Del Negro
Kaiwen Kam
P2860
P304
P356
10.1113/JPHYSIOL.2008.164079
P407
P577
2009-01-26T00:00:00Z