About
I obtained a bachelor’s and a master’s degree in medicine. I received rigorous training in biomedical research with a focus on hypertension and chronic kidney disease from Macquarie University and got my doctoral degree in 2020. My PhD research uses a polycystic kidney disease model to investigate the effect of renal denervation on blood pressure, cardiac autonomic and renal function in chronic kidney disease. My reserach showed that renal denervation does not affect the blold pressure, cardiac automomic and renal function in polycysitc kidney disesae, which has important clinical implications as this can prevent unnecessary renal denervation procedures in patients with polycystic kidney disease.
Currently, I am interested in research in sepsis-induced acute kidney injury, and especially the use of MRI to detect altered renal microcirculation in early stage.
Employment
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Sun Yat-sen University
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (10)
- NN50 and pNN50, two time-domain heart rate variability parameters were associated with 30-day all-cause mortality in patients admitted to intensive care unit: A Retrospective Study of the MIMIC-IV Database Save
- Angiotensin II and polycystic kidney disease Save
- Patient Selection for Renal Denervation in Hypertensive Patients: What Makes a Good Candidate? Save
- Renal denervation does not affect hypertension or the renin-angiotensin system in a rodent model of juvenile-onset polycystic kidney disease: clinical implications Save
- Cardiorenal protective effects of renal denervation in chronic kidney disease Save
- Renal denervation does not reduce blood pressure in a rodent model of polycystic kidney disease Save
- Increased arterial stiffness does not respond to renal denervation in an animal model of secondary hypertension Save
- Gender differences in the association between hyperuricemia and diabetic kidney disease in community elderly patients Save
- Intake of fruit and vegetables and risk of bladder cancer Save
- Angiotensin-(1-7) attenuates damage to podocytes induced by preeclamptic serum through MAPK pathways Save