Acute intermittent hypoxia enhances strength, and modulates spatial distribution of muscle activation in persons with chronic incomplete spinal cord injury
Author:
Publisher
Elsevier BV
Subject
Developmental Neuroscience,Neurology
Reference26 articles.
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3. BDNF is necessary and sufficient for spinal respiratory plasticity following intermittent hypoxia;Baker-Herman;Nat. Neurosci.,2004
4. Acute intermittent hypoxia enhances corticospinal synaptic plasticity in humans;Christiansen;Elife.,2018
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1. Short-term intermittent hypoxia exposure for dyspnea and fatigue in post-acute sequelae of COVID-19: A randomized controlled study;Respiratory Medicine;2024-10
2. Acute intermittent hypoxia increases maximal motor unit discharge rates in people with chronic incomplete spinal cord injury;The Journal of Physiology;2024-07-26
3. Oxygen deprivation is a muscle revelation: hypoxia enhances motor unit firing after spinal cord injury;The Journal of Physiology;2024-07-20
4. Intermittent hypoxia therapy for motor insufficiency: hype, hope or hard work?;The Journal of Physiology;2024-07-19
5. Motor-evoked potentials in the human upper and lower limb do not increase after single 30-min sessions of acute intermittent hypoxia;Journal of Applied Physiology;2024-07-01
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