Related Experiment Video
Updated: Jan 10, 2026

Delivery of In Vivo Acute Intermittent Hypoxia in Neonatal Rodents to Prime Subventricular Zone-derived Neural Progenitor Cell Cultures
Published on: November 2, 2015
Diurnal cycle and acute intermittent hypoxia protocol interact to regulate ventilatory long-term facilitation in
Aaron A Jones1, Gordon S Mitchell1
1Breathing Research and Therapeutics Center, Department of Physical Therapy and McKnight Brain Institute, University of Florida, Gainesville, Florida, United States.
Abstract:
Acute intermittent hypoxia (AIH) elicits plasticity in multiple respiratory motor pools and is a promising therapeutic approach to restore breathing ability in individuals with neuromuscular injury/disease. In anesthetized rats, diurnal cycle affects the magnitude and mechanism of moderate AIH (arterial partial pressure of oxygen [Formula: see text] ∼40-50 mmHg) induced phrenic motor plasticity in an AIH protocol-specific manner. However, diurnal cycle and AIH protocol effects on ventilatory long-term facilitation (vLTF) in unanesthetized rats have not been reported. Measurements of vLTF assess the collective physiological impact of plasticity in all respiratory motor pools and control for the effects of anesthesia, paralysis, and vagotomy common in phrenic LTF studies. Using 2 AIH protocols consisting of 15, 1-min (15x1; [Formula: see text] = 0.09) or 3, 5-min (3x5; [Formula: see text] = 0.105) moderate hypoxic episodes, we tested the hypothesis that diurnal cycle regulates AIH-induced vLTF in unanesthetized male Sprague-Dawley rats. Minute ventilation (V̇e), tidal volume (VT), breathing frequency (fR), and metabolic CO2 production (V̇co2) were assessed via whole-body plethysmography during mid-rest (light) and mid-active (dark) phases. Since V̇e and VT correlate strongly with V̇co2 across the rest/active cycle, and AIH decreases V̇co2, we normalized V̇e and VT to V̇co2 (V̇e/V̇co2 and VT/V̇co2) to account for changes in ventilation linked to metabolism. We found that 15x1 AIH elicits greater vLTF in mid-rest, whereas 3x5 AIH is more effective in mid-active phase, indicating that diurnal cycle regulates respiratory motor plasticity in an AIH protocol-specific manner in unanesthetized rats. Diurnal cycle is an important consideration as we translate knowledge based on nocturnal rodents to diurnal humans with neuromuscular injury/disease.NEW & NOTEWORTHY Although acute intermittent hypoxia (AIH) elicits phrenic motor plasticity in a manner influenced by diurnal cycle and the specific AIH protocol used, it is unknown how diurnal cycle and AIH protocol regulate AIH-induced ventilatory long-term facilitation (vLTF) in unanesthetized rodents. We report that shorter hypoxic episodes elicit greater vLTF in mid-rest phase, whereas longer episodes are favorable in mid-active phase. Thus, diurnal cycle and AIH protocol must be considered in studies of respiratory motor plasticity.
Related Concept Videos
Physiological Control of Respiration
Breathing, a seemingly passive process, is regulated by the respiratory center in the brainstem. This center coordinates the involuntary control of respirations, which means it occurs without conscious effort, ensuring a smooth and uninterrupted pattern.
Regulation of Ventilation
The body maintains ventilation by monitoring levels of carbon dioxide (CO2), oxygen (O2), and hydrogen ion concentration (pH) in the arterial blood. Among these factors, the level of CO2 plays a crucial...
Acute Respiratory Failure-II
The underlying physiological abnormalities that contribute to hypoxemic respiratory failure include:

