Area of research
Endocrine and Autonomic Systems · Pulmonary and Respiratory Medicine
Research interest
Research interests include Neuroscience of respiration and sleep, Respiratory Support and Mechanisms, Spinal Cord Injury Research, and Sleep and Wakefulness Research.
Microglia regulate motor neuron plasticity via reciprocal fractalkine and adenosine signaling
Enhanced phrenic motor neuron BDNF expression elicited by daily acute intermittent hypoxia is undermined in rats with chronic cervical spinal cord injury
Microglia regulate motor neuron plasticity via reciprocal fractalkine/adenosine signaling
Glucose Carbon Dots Cross the Blood-Brain Barrier and Preferentially Target Spinal Neurons
Hypoxia-Evoked Spinal Adenosine Kinetics in Rats with Chronic Spinal Cord Injury
Hydrothermal vs microwave nanoarchitechtonics of carbon dots significantly affects the structure, physicochemical properties, and anti-cancer activity against a specific neuroblastoma cell line
Intermittent Hypoxia Differentially Regulates Adenosine Receptors in Phrenic Motor Neurons with Spinal Cord Injury
Daily fluctuations in spinal adenosine determine mechanisms of respiratory motor plasticity
Crossing the blood–brain barrier with carbon dots: uptake mechanism and<i>in vivo</i>cargo delivery
Serotonergic innervation of respiratory motor nuclei after cervical spinal injury: Impact of intermittent hypoxia
Crossing Blood‐Brain Barrier with Carbon Quantum Dots
Adenosine 2A Receptor Inhibition Promotes Neuroprotection Following Toxic Insult to Phrenic Motor Neurons