Area of research
Biophysics · Biomedical Engineering
Research interest
Research topics from publications: Cathodal tDCS exerts neuroprotective effect in rat brain after acute ischemic stroke; Effects of 220 MHz Pulsed Modulated Radiofrequency Field on the Sperm Quality in Rats; tDCS Accelerates the Rehabilitation of MCAO-Induced Motor Function Deficits via Neurogenesis Modulated by the Notch1 Signaling Pathway; Repetitive transcranial magnetic stimulation ameliorates cognitive deficits in mice with radiation-induced brain injury by attenuating microglial pyroptosis and promoting neurogenesis via BDNF pathway; Intestinal microbiota via NLRP3 inflammasome dependent neuronal pyroptosis mediates anxiety-like behaviour in mice exposed to 3.5 GHz radiofrequency radiation; The Abscopal Effects of Cranial Irradiation Induce Testicular Damage in Mice; Effects of radiofrequency field from 5G communications on the spatial memory and emotionality in mice; Effects of X-ray cranial irradiation on metabolomics and intestinal flora in mice; Abscopal effects of thoracic X-ray radiation on spermatogenesis in mice; SCF/C-kit drives spermatogenesis disorder induced by abscopal effects of cranial irradiation in mice. Representative work: BACKGROUND: Transcranial direct current stimulation (tDCS) is a non-invasive brain modulation technique that has been proved to exert beneficial effects in the acute phase of stroke. To explore the underlying mechanism, we investigated the neuroprotective effects of cathodal tDCS on brain injury caused by middle cerebral artery occlusion (MCAO). RESULTS: We established the MCAO model and sham MCAO model with an epicranial electrode implanted adult male Sprague-Dawley rats, and then they were randomly divided into four groups (MCAO + tDCS, MCAO + sham tDCS (Sham), Control + tDCS and Control + Sham group). In this study, the severity degree of neurological deficit, the morphology of brain dama Under some occupational conditions, workers are inevitably exposed to high-intensity radiofrequency (RF) fields. In this study, we investigated the effects of one-month exposure to a 220 MHz pulsed modulated RF field at the power density of 50 W/m² on the sperm quality in male adult rats. The sperm quality was evaluated by measuring the number, abnormality and survival rate of sperm cells. The morphology of testis was examined by hematoxylin-eosin (HE) staining. The levels of secreting factors by Sertoli cells (SCs) and Leydig
Repetitive transcranial magnetic stimulation ameliorates cognitive deficits in mice with radiation-induced brain injury by attenuating microglial pyroptosis and promoting neurogenesis via BDNF pathway
Intestinal microbiota via NLRP3 inflammasome dependent neuronal pyroptosis mediates anxiety-like behaviour in mice exposed to 3.5 GHz radiofrequency radiation
Effects of X-ray cranial irradiation on metabolomics and intestinal flora in mice
SCF/C-kit drives spermatogenesis disorder induced by abscopal effects of cranial irradiation in mice
Effects of radiofrequency field from 5G communications on the spatial memory and emotionality in mice
Abscopal effects of thoracic X-ray radiation on spermatogenesis in mice
The Abscopal Effects of Cranial Irradiation Induce Testicular Damage in Mice
Cathodal tDCS exerts neuroprotective effect in rat brain after acute ischemic stroke
tDCS Accelerates the Rehabilitation of MCAO-Induced Motor Function Deficits via Neurogenesis Modulated by the Notch1 Signaling Pathway
Effects of 220 MHz Pulsed Modulated Radiofrequency Field on the Sperm Quality in Rats