Pre-Bötzinger complex: a brainstem region that may generate respiratory rhythm in mammals.
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Summary
The respiratory rhythm in the mammalian neonatal nervous system may result from a population of conditional bursting pacemaker neurons in the pre-Bötzinger Complex.
- Type
- article
- Published
- 1991-11-01
- Cited by
- 2,143
- References
- 26
- OpenAlex
- https://openalex.org/W2037688283
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:19615574
Keywords
Brainstem, Rhythm, Bursting, Medulla, Neuroscience
References
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- Localization of respiratory rhythm-generating neurons in the medulla of brainstem-spinal cord preparations from newborn rats.
- Possible modulation of the medullary respiratory rhythm generator by the noradrenergic A5 area: an in vitro study in the newborn rat.
- In vitro brainstem-spinal cord preparations for study of motor systems for mammalian respiration and locomotion.
- Whole cell recording from neurons in slices of reptilian and mammalian cerebral cortex.
- Role of excitatory amino acids in the generation and transmission of respiratory drive in neonatal rat.
- Subnuclear organization of the lateral tegmental field of the rat. I: Nucleus ambiguus and ventral respiratory group
- Cellular Mechanisms Underlying Modulation of Breathing Pattern in Mammals a
- How Is the Respiratory Rhythm Generated? A Model
- Neural mechanisms generating respiratory pattern in mammalian brain stem-spinal cord in vitro. I. Spatiotemporal patterns of motor and medullary neuron activity.
- Respiratory muscles and their neuromotor control (volume 26 of nuerology and neurobiology): Eds Gary A. Sieck, Simon C. Gandevia & William E. Cameron New York: Alan R. Liss. 1987. 1st edition. Pp. 498. Price £48.00
Cited by
- Generation and transmission of respiratory oscillations in medullary slices: role of excitatory amino acids.
- Chemosensitive medullary neurones in the brainstem‐‐spinal cord preparation of the neonatal rat.
- Medullary regions for neurogenesis of gasping: noeud vital or noeuds vitals?
- The non-selective monovalent cationic channels TRPM4 and TRPM5.
- Distribution and colocalization of neurotransmitters and receptors in the pre-Bötzinger complex of rats.
- Serotonin elicits long-lasting enhancement of rhythmic respiratory activity in turtle brain stems in vitro.
- Periodicity, mixed-mode oscillations, and quasiperiodicity in a rhythm-generating neural network.
- Pharmacology of nicotinic receptors in preBötzinger complex that mediate modulation of respiratory pattern.
- Influence of respiratory network drive on phrenic motor output evoked by activation of cat pre-Botzinger complex.
- Whole Cell Recordings From Respiratory Neurones in an Arterially Perfused in situ Neonatal Rat Preparation
- Hyperthermia modulates respiratory pacemaker bursting properties.
- Glutamate neurotransmission is not required for, but may modulate, hypoxic sensitivity of pre-Bötzinger complex in vivo.
- Novel data supporting the two respiratory rhythm oscillator hypothesis. Focus on "respiration-related rhythmic activity in the rostral medulla of newborn rats".
- Neuronal mechanisms of oxygen chemoreception: an invertebrate perspective.
- Respiratory rhythm generation: preBötzinger neuron discharge patterns and persistent sodium current.
- Phox2b, RTN/pFRG neurons and respiratory rhythmogenesis.
- Role of neurokinin receptors and ionic mechanisms within the respiratory network of the lamprey.
- A Sodium Leak Current Regulates Pacemaker Activity of Adult Central Pattern Generator Neurons in Lymnaea Stagnalis
- Beta-asarone inhibits synaptic inputs to airway preganglionic parasympathetic motoneurons.
- Determinants of Functional Coupling between Astrocytes and Respiratory Neurons in the Pre-Bötzinger Complex
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