Area of research
Pathology and Forensic Medicine · Cellular and Molecular Neuroscience
Research interest
Research focused on Spinal cord injury and Tropomyosin receptor kinase B, with related work in Spinal cord, Neuropathic pain, Decellularization. Notable publications include 'Human menstrual blood-derived stem cells promote functional recovery in a rat spinal cord hemisection model', 'Blocking of BDNF-TrkB signaling inhibits the promotion effect of neurological function recovery after treadmill training in rats with spinal cord injury', and 'Exercise training modulates glutamic acid decarboxylase-65/67 expression through TrkB signaling to ameliorate neuropathic pain in rats with spinal cord injury'.
A decellularized spinal cord extracellular matrix-gel/GelMA hydrogel three-dimensional composite scaffold promotes recovery from spinal cord injury <i>via</i> synergism with human menstrual blood-derived stem cells
Body Weight-Supported Treadmill Training Ameliorates Motoneuronal Hyperexcitability by Increasing GAD-65/67 and KCC2 Expression via TrkB Signaling in Rats with Incomplete Spinal Cord Injury
LncRNA/miRNA/mRNA ceRNA network analysis in spinal cord injury rat with physical exercise therapy
Exercise training modulates glutamic acid decarboxylase-65/67 expression through TrkB signaling to ameliorate neuropathic pain in rats with spinal cord injury
Epileptic EEG Signals Recognition Using a Deep View-Reduction TSK Fuzzy System With High Interpretability
Human menstrual blood-derived stem cells promote functional recovery in a rat spinal cord hemisection model
Blocking of BDNF-TrkB signaling inhibits the promotion effect of neurological function recovery after treadmill training in rats with spinal cord injury
Neuromuscular interaction is required for neurotrophins-mediated locomotor recovery following treadmill training in rat spinal cord injury