Area of research
Biomedical Engineering · Molecular Biology
Research interest
Research interests include Muscle activation and electromyography studies, Muscle Physiology and Disorders, Spinal Cord Injury Research, and Transcranial Magnetic Stimulation Studies.
Oncorhynchus milt DNA supplementation combined with voluntary exercise alters exercise-related energy substrate utilization of skeletal muscle in mice
Nucleoprotein‐enriched diet enhances protein synthesis pathway and satellite cell activation via ERK1/2 phosphorylation in unloaded rat muscles
Mild hyperbaric oxygen inhibits the growth‐related decline in skeletal muscle oxidative capacity and prevents hyperglycemia in rats with type 2 diabetes mellitus
Biodegradable scaffolds promote tissue remodeling and functional improvement in non-human primates with acute spinal cord injury
Electrical neuromodulation of the cervical spinal cord facilitates forelimb skilled function recovery in spinal cord injured rats
Unloading-induced atrophy and decreased oxidative capacity of the soleus muscle in rats are reversed by pre- and postconditioning with mild hyperbaric oxygen
<i>Enterococcus faecium</i> strain R30 increases red blood cell velocity and prevents capillary regression in the soleus of hindlimb‐unloaded rats via the <scp>eNOS</scp>/<scp>VEGF</scp> pathway
Engaging Cervical Spinal Cord Networks to Reenable Volitional Control of Hand Function in Tetraplegic Patients
Olfactory Ensheathing Cell Transplantation after a Complete Spinal Cord Transection Mediates Neuroprotective and Immunomodulatory Mechanisms to Facilitate Regeneration
Noninvasive Reactivation of Motor Descending Control after Paralysis
Pronounced species divergence in corticospinal tract reorganization and functional recovery after lateralized spinal cord injury favors primates
Plasticity of subcortical pathways promote recovery of skilled hand function in rats after corticospinal and rubrospinal tract injuries
PPARδ preserves a high resistance to fatigue in the mouse medial gastrocnemius after spinal cord transection
Initiation and modulation of locomotor circuitry output with multisite transcutaneous electrical stimulation of the spinal cord in noninjured humans
Amelioration of capillary regression and atrophy of the soleus muscle in hindlimb‐unloaded rats by astaxanthin supplementation and intermittent loading
Identification of interneurons activated at different inclines during treadmill locomotion in adult rats
Effects of gravitational loading levels on protein expression related to metabolic and/or morphologic properties of mouse neck muscles
Alterations in muscle mass and contractile phenotype in response to unloading models: role of transcriptional/pretranslational mechanisms
Use of quadrupedal step training to re-engage spinal interneuronal networks and improve locomotor function after spinal cord injury
Development of a multi-electrode array for spinal cord epidural stimulation to facilitate stepping and standing after a complete spinal cord injury in adult rats
Sub-threshold spinal cord stimulation facilitates spontaneous motor activity in spinal rats
Basic Concepts of Activity-Based Interventions for Improved Recovery of Motor Function After Spinal Cord Injury
Animal Models of Neurologic Disorders: A Nonhuman Primate Model of Spinal Cord Injury
Somatosensory control of balance during locomotion in decerebrated cat
Variability in step training enhances locomotor recovery after a spinal cord injury
Neurobiological perspective of spasticity as occurs after a spinal cord injury