Zheng Yu 郑羽

The publisher:管理员Delivery time:2024-11-01Views:10






Zheng Yu

Professor and Doctor

Tel.:+86-18222128406

E-mail:zhengyu@tiangong.edu.cn



Introduction


Postdoctor in BME Deparment, Tianjin University, China                 06/2011 - 06/2013

Ph.D inBME Department, Tianjin University, China                      03/2005 - 02/2008

Schooloflifesciences,Tiangong University, China2019.03-present

School of electronic and Information Engineering,Tiangong University, China 2004.04-2019.02


Research areas


Bio-electromagnetic, Cell electrophysiology, Biomedical Electronics,Marine Communication Technology.


Main courses taught


Introduction to Life Sciences, Sensors and Medical Engineering.


Main publications


1. Zheng, Yu(#)(*); Ma, Xiao-xu; Dong, Lei; Ma, Wei; Cheng, Jian-hao, Effects of uninterrupted sinusoidal LF-EMF stimulation on LTP induced by different combinations of TBS/HFS at the Schaffer collateral-CA1 of synapses, Brain Research, 2019, 1725, 146487.

2. Zheng, Yu(#)(*) et al., Effects of exposure to extremely low frequency electromagnetic fields on hippocampal long-term potentiation in hippocampal CA1 region, Biochemical and Biophysical Research Communications, 2019, 517(3)513~519.

3. Zheng, Yu(#)(*); Tian, Chun-xiao; Dong, Lei; et.al, Extreme Low Frequency Electromagnetic Field Stimulation Induces Metaplastic-Like Effects on LTP/ LTD, IEEE Access, 2019,7, 152919 - 152927.

4. Zheng, Yu(#)(*); Ma, Xiao xu; Dong, Lei; Gao, Yang; Tian, Lei; Effects of single- and hybrid-frequency extremely low-frequency electromagnetic field stimulations on long-term potentiation in the hippocampal Schaffer, International Journal of Radiation Biology, 2019, 95(9)1319~1325.

5. Dong L, Zheng Y, Li ZY, Li G, Lin L. Modulating effects of on-line low frequency electromagnetic fields on hippocampal long-term potentiation in young male Sprague-Dawley rat. Journal of Neuroscience Research, 2018,96:1775-1785.

6. Zheng, Yu(#)(*); Qin, Xiao-cong; Dong, Lei; Dou, Jun-rong; Wang, Hui-quan; Zhou, Mei, Effect of ion concentration on the temperature measurement model of extracellular fluid by near-infrared spectroscopy, Optik, 2018, 156: 128~134.

7. Zheng, Yu(#)(*); Xue, Jing; Gao, Yang; Dong, Lei; Dou, Jun-rong; Ma, Wei, Possible Effects of Electric Fields on a Pair of Spherical Cells, Journal of Membrane Biology, 2017, 250(5): 433~440.

8. Zheng, Yu(#)(*); Ma, Wei; Dong, Lei; Dou, Jun-rong; Gao, Yang; Xue, Jing, Influence of the on-line ELF-EMF stimulation on the electrophysiological properties of the rat hippocampal CA1 neurons in vitro, Review of Scientific Instruments, 2017, 88(10): 1~5.

9. Zheng, Yu(#)(*); Dou, Jun-rong; Gao, Yang; Dong, Lei; Li, Gang, Effects of 15 Hz square wave magnetic fields on the voltage-gated sodium and potassium channels in prefrontal cortex pyramidal neurons, International Journal of Radiation Biology, 2017, 93(4): 449~455.

10. Gao, Yang; Zheng, Yu(*); Chen, Ruijuan; Wang, Hui-Quan; Dong, Lei; Dou, Junrong, Possible Mechanism for Effects Caused by Exposure to Extremely Low Frequency Magnetic Fields, IEEE Transactions On Magnetics, 2016, 52(12): 1~8.

11. Zheng, Yu(#)(*); Gao, Yang; Chen, Ruijuan; Wang, Huiquan; Dong, Lei; Dou, Junrong, A new theoretical model for transmembrane potential and ion currents induced in a spherical cell under low frequency electromagnetic field,Bioelectromagnetics, 2016, 37(7): 481~492.

12. Zheng, Yu(#)(*); Dong, Lei; Gao, Yang; Dou, Jun-Rong; Li, Ze-Yan, A comparison of 15 Hz sine on-line and off-line magnetic stimulation affecting the voltage-gated sodium channel currents of prefrontal cortex pyramidal neurons, Europhysics Letters,2016, 116(1): 1~6.

13 Zheng, Yu(#)(*); Dong, Lei; Gao, Yang; Qiu, Qian; Li, Ze-yan; Zhao, Zhe; Chen, Rui-juan; Wang, Hui-quan, Simulation and experimental study of DC electric field distribution characteristics of rat hippocampal slices in vitro, Review of Scientific Instruments, 2016, 87(6): 1~10.

14 Zheng, Yu(#)(*); Dong, Lei; Kong, Ying; Hong, Hui; Gao, Yang; Zhao, Zhe; Wang, Hui-quan, Patch-clamp recordings of thermal effects of magnetic stimulation on the physiological characteristic of rat hippocampal neurons, Archives of Biological Sciences, 2016, 68(3): 567~573.