Related Experiment Video
Updated: Aug 6, 2026

05:45
Delivery of In Vivo Acute Intermittent Hypoxia in Neonatal Rodents to Prime Subventricular Zone-derived Neural Progenitor Cell Cultures
Published on: November 2, 2015
Ampakine-Hypoxia pairing reveals a novel NMDA-dependent respiratory neuroplasticity
Pauline Michel-Flutot1, Kun-Ze Lee2,3, Stéphane Vinit1
1Université Paris-Saclay, UVSQ, Inserm U1357, IMPROVE, 78000 Versailles, France.
Function (Oxford, England)
|July 17, 2026
Abstract
No abstract available in PubMed .
Keywords:
Ampakine-hypoxia pairingNMDA-dependent plasticityphrenic motor facilitationrespiratory motor controlspinal cord injury rehabilitationsynaptic plasticityMore Related Videos
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Published on: November 19, 2015
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Published on: July 11, 2025
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Physiology of Respiration II: Neurogenic Control of Respiration
The neurogenic control of respiration coordinates various neural networks and pathways to regulate breathing rate and depth, meeting the body's oxygen and carbon dioxide exchange requirements. This system adapts to physiological and environmental conditions, ensuring optimal breathing patterns.
Central Control
The brainstem is the primary site of central control, hosting respiratory centers:
Central Control
The brainstem is the primary site of central control, hosting respiratory centers:
Acute Respiratory Failure-II
Type I Respiratory Failure, or hypoxemic respiratory failure, occurs when the partial pressure of oxygen (PaO2) in arterial blood falls below 60 mmHg while breathing room air without a corresponding increase in arterial carbon dioxide levels (PaCO2). This condition highlights a significant impairment in the lungs' capacity to oxygenate the blood.
The underlying physiological abnormalities that contribute to hypoxemic respiratory failure include:
The underlying physiological abnormalities that contribute to hypoxemic respiratory failure include: