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Sensorimotor control of breathing in the mdx mouse model of Duchenne muscular dystrophy
David P. Burns
, Arijit Roy
, Eric F. Lucking
,
Fiona B. McDonald
, Sam Gray
, Richard J. Wilson
, Deirdre Edge
,
Ken D. O'Halloran
School of Medicine
University of Calgary
Trinity College Dublin
Research output
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peer-review
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Medicine and Dentistry
Control of Breathing
100%
Duchenne Muscular Dystrophy
100%
Diaphragm
100%
Sensory-Motor Control
100%
Carotid Body
50%
Electromyography
37%
Tidal Volume
37%
Hypoxia
25%
Carbon Dioxide
25%
Hypoactivity
25%
Breathing
25%
Hyperoxia
25%
Drive
12%
Arterial Blood Gas
12%
Disease Exacerbation
12%
Respiratory Failure
12%
Muscle Weakness
12%
Diaphragm Muscle
12%
Airway Management
12%
Emerging Treatment
12%
Lung Capacity
12%
Muscle Strength
12%
Carotid Sinus Nerve
12%
Nerve Potential
12%
Hypoventilation
12%
Dystrophinopathy
12%
Neuroscience
Muscular Dystrophy
100%
Sensory-Motor Control
100%
Carotid Body
57%
Metabolic Pathway
42%
Electromyography
42%
Tidal Volume
42%
Neuroplasticity
28%
Hypoactivity
28%
Hyperoxia
28%
Arterial Blood Gas
14%
Carotid Sinus
14%
Nerve Potential
14%