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Respiratory Physiology & Neurobiology|November 15, 2016
Short-term modulation of the ventilatory response to exercise is preserved in obstructive sleep apneaVipa Bernhardt, Gordon S Mitchell, Won Y Lee, et al.
Respiratory Physiology & Neurobiology|July 11, 2003
Sex steroid hormones and the neural control of breathingMary Behan, Andrea G Zabka, Cathy F Thomas, et al.
Respiratory Physiology & Neurobiology|November 24, 2004
Breathing in thin air: acclimatization to altitude in ducksFrank L Powell, Hashim Shams, Steven C Hempleman, et al.
Elife|April 25, 2018
Acute intermittent hypoxia enhances corticospinal synaptic plasticity in humansLasse Christiansen, M A Urbin, Gordon S Mitchell, et al.
Experimental Neurology|June 19, 2012
Repetitive acute intermittent hypoxia increases expression of proteins associated with plasticity in the phrenic motor nucleusIrawan Satriotomo, Erica A Dale, Jenny M Dahlberg, et al.
Journal of Clinical Neuroscience : Official Journal of the Neurosurgical Society of Australasia|July 26, 2024
Comparing reactive versus empiric cerebrospinal fluid drainage strategies for spinal perfusion pressure optimization in patients with acute traumatic spinal cord injuriesRaj S Lavadi, Benjamin R Johnson, Joshua I Chalif, et al.
Experimental Neurology|August 20, 2015
Acute intermittent hypoxia induced phrenic long-term facilitation despite increased SOD1 expression in a rat model of ALSNicole L Nichols, Irawan Satriotomo, Daniel J Harrigan, et al.
Function (Oxford, England)|June 9, 2026
Circadian clock protein Bmal1 regulates respiratory motor plasticity in male ratsAaron A Jones, Alexandria Beverly Marciante, Pierce Berardi, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|April 10, 2003
Synaptic pathways to phrenic motoneurons are enhanced by chronic intermittent hypoxia after cervical spinal cord injuryDavid D Fuller, Stephen M Johnson, E Burdette Olson, et al.
Neuroscience Letters|March 26, 2002
Chronic cervical spinal sensory denervation reveals ineffective spinal pathways to phrenic motoneurons in the ratDavid D Fuller, Stephen M Johnson, Rebecca A Johnson, et al.
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