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Journal of Neurotrauma|March 12, 2024
Cardiorespiratory Responses to Acute Intermittent Hypoxia in Humans With Chronic Spinal Cord InjuryJoseph F Welch, Alicia K Vose, Kate Cavka, et al.
Experimental Neurology|September 28, 2020
Acute intermittent hypoxia boosts spinal plasticity in humans with tetraplegiaLasse Christiansen, Bing Chen, Yuming Lei, et al.
Nature Medicine|February 22, 2023
Epidural stimulation of the cervical spinal cord for post-stroke upper-limb paresisMarc P Powell, Nikhil Verma, Erynn Sorensen, et al.
Medrxiv : the Preprint Server for Health Sciences|December 11, 2023
SUPRASPINAL CONTROL OF MOTONEURONS AFTER PARALYSIS ENABLED BY SPINAL CORD STIMULATIONJosep-Maria Balaguer, Genis Prat-Ortega, Nikhil Verma, et al.
Medrxiv : the Preprint Server for Health Sciences|August 13, 2025
SPINAL CORD STIMULATION IMPROVES MOTOR FUNCTION AND SPASTICITY IN CHRONIC POST-STROKE UPPER LIMB HEMIPARESISRoberto M de Freitas, Shovan Bhatia, Erynn Sorensen, et al.
Neuroscience|October 23, 2022
Intermittent Hypoxia Differentially Regulates Adenosine Receptors in Phrenic Motor Neurons with Spinal Cord InjuryYasin B Seven, Latoya L Allen, Marissa C Ciesla, et al.
Nature Medicine|June 4, 2026
Spinal cord stimulation for upper limb motor function in people with chronic post-stroke hemiparesis: a feasibility trialRoberto M de Freitas, Shovan Bhatia, Erynn Sorensen, et al.
Neuron|September 20, 2025
Neural mechanisms underlying the recovery of voluntary control of motoneurons after paralysis with spinal cord stimulationJosep-Maria Balaguer, Genis Prat-Ortega, Julia Ostrowski, et al.
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