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李伟
来源:  作者:  发表时间:2013-12-16  阅读次数:2229次

姓         名:李 伟  

学         位:博士

导师情况:博士生导师

研究领域:Neuroscience(神经生物学)
                      Biophysics(生物物理)

研究方向:1、Neuronal signaling in sensory transduction.
                     2、Mechanisms of mechanosensation and pain.
                     3、Pain-related genes and drugs screen in model system C.elegans.

     E-mailweili.umich@gmail.com
                     weilee@umich.edu

联系电话:021-65989262

通讯地址:上海市四平路1239号,同济大学生命科学与技术学院(200092)

个人简介:

Wei Li, Ph.D.

Dr. Li joined the faculty of the School of Life Sciences and Technology in 2012. Li received her Ph.D. degree in Biophysics from Huazhong University of Science and Technology. Prior to joining Tongji University, Li completed her post-doctoral training at the University of Michigan, where she was awarded the American Heart Association Postdoctoral Fellowship.

The Li lab combines the genetic model organism C.elegans and mammalian system to study the mechanisms of mechanosensation and pain, and uses a multidisciplinary approach of molecular genetics, functional imaging, electrophysiology, optogenetics and behavioral analysis.

 

获奖情况

美国心脏学会American Heart Association Postdoctoral Fellowship

2012年入选国家“青年千人计划”

 

代表性文章:

Wei Li, Lijun Kang, Beverly J. Piggott, Zhaoyang Feng, X. Z. Shawn Xu. (2011) The neural circuits and sensory channels mediating harsh touch sensation in Caenorhabditis elegans. Nature Communications. 2:315

Wei Li*, Shangbang Gao*, Caixia Lv, Ying Wu, Zhaohua Guo, Jiuping Ding, Tao Xu. (2007) Characterization of voltage- and Ca2+-activated K+ channels in rat dorsal root ganglion neurons. Journal of Cellular Physiology. 212: 348-357.

Zhaoyang Feng*, Wei Li*, Alex Ward, Beverly J. Piggott, Erin R. Larkspur, Paul W. Sternberg, and X.Z. Shawn Xu. (2006) A C. elegans Model of Nicotine-Dependent Behavior: regulation by TRP-Family Channels. Cell. 127:621-33. (*co-first author)

Wei Li, Zhaoyang Feng, Paul W. Sternberg and X. Z. Shawn Xu. (2006) A C. elegans stretch receptor neuron revealed by a mechanosensitive TRP channel homologue. Nature. 440:684-7.

 

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