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中国科学技术大学博士生导师教师师资介绍简介-庄杰

本站小编 Free考研考试/2021-04-21

庄杰
单位:中科院苏州生物医学工程技术研究所
地址:苏州高新区科技城科灵路88号
邮编:215163
电话:**
个人主页: https://space.bilibili.com/
实验室介绍: http://sourcedb.sibet.cas.cn/zw/yjdw/yjy/201809/t**_**.html


个人简历 Personal resume


庄杰,工学博士,研究员,先后在厦门大学、北京大学和美国Old Dominion大学获学士、硕士和博士学位,博士导师为超短高压脉冲电场肿瘤消融技术奠基人、IEEE终身会士Karl Schoenbach教授,2012年加入德国莱布尼茨等离子体研究所(INP Greifswald)任研究员,2017年底回国加入中科院苏州医工所。国家重点研发计划首席科学家,曾获富林沃斯国际青年创新奖,“春晖杯”留学人员创新创业大赛优胜奖以及IEEE DEIS奖学金等国内外奖项。国际生物电协会技术委员会委员,中国电工技术学会青年工作委员会委员,中国电工技术学会等离子体及应用专业委员会委员,苏州市高新区创业领军人才,IEEE Transaction on Plasma Science客座编辑,发表SCI论文20余篇,国内外发明专利7项。主要研究方向为超短高压脉冲电场、大气低温等离子体与介电谱技术的生物医学与环境应用,参与和主持了美国空军、美国国防部、IEEE DEIS学会、德国联邦教育与研究部、中科院、科技部等多个项目,目前在医工所与生物电课题组成员共同研发基于脉冲电场和等离子体的医疗器械与科学仪器,开展细胞与动物实验,合作推进临床试验,并对科研成果进行产业化。课题组现有研究人员5人(美国博士2人,德国博士1人,北大、国科大博士各一人),专业背景涵盖电子电气、生物医学、物理学以及人工智能等领域,研究生7人,目前课题组成员主持国家重点研发计划项目一项、课题两项、中科院****一项以及江苏省双创博士一项。联系邮箱:jzhuang@sibet.ac.cn联系电话(微信):**


研究方向 Research direction


1、超短高压脉冲电场的生物医学应用
2、大气低温等离子体的生物医学应用
3、生物介电谱和阻抗谱技术



招生信息 Enrollment information


生物医学工程、电子电气、机电、生物、物理、化学和药学等专业背景,愿意从事高压脉冲、大气低温等离子体和生物介电谱等技术的工程研发或生物医学应用研究。能熟练阅读英语文献,工作态度认真、踏实、负责,有团队合作和独立钻研精神。课题组与国外多所大学研究所有着密切合作关系,对于未来有志出国进一步深造的优秀学生可直接推荐。


论文专著 The monograph


1)Impedimetric Characterization of Normal and Cancer Cell Responses after Nano-pulse Stimulation - Journal of Physics D: Applied Physics - 2020 - accepted
2)Nonleaching Antibacterial Concept Demonstrated by In Situ Construction of 2D Nanoflakes on Magnesium - Advanced Science - 2019 - **
3)Discrimination of different cell monolayers before and after exposure to nanosecond pulsed electric fields based on Cole–Cole and multivariate analysis - Journal of Physics D: Applied Physics - 2019 - 52 (2019) 495401
4)Bioimpedance Analysis of Epithelial Monolayers after Exposure to Nanosecond Pulsed Electric Fields - IEEE Transactions on Biomedical Engineering - 2018 - VOL. 66, NO. 7
5)Cobalt Containing Polyimide Films Treated by Nanosecond Pulsed Electrical Discharges in Water - IEEE Transactions on Plasma Science - 2016 -
6)Dielectric Spectroscopy of Polyimide Films Treated by Nanosecond High Voltage Pulsed Driven Electrical Discharges in Water - Plasma Processes and Polymers - 2016 -
7)Predicting the prevalence of peripheral arterial diseases: modeling and validation in different cohorts - European Journal of Vascular Medicine - 2016 -
8)Formation mechanism of streamer discharges in liquids: a rev - High Voltage - 2016 -
9)Time Domain Dielectric Spectroscopy of Nanosecond Pulsed Electric Field Induced Changes in Dielectric Properties of Pig Whole Blood - Bioelectrochemistry - 2015 -
10)Piezoelectric-Enhanced Oriented Cobalt Coordinated Peptide Monolayer with Rectification Behavior - Small - 2015 -
11)Self-Reported Insomnia and Coronary Heart Disease in the Elderly - Clinical and Experimental Hypertension - 2015 -
12)Synergistic Antibacterial Effects of Treatments with Low Temperature Plasma Jet and Pulsed Electric Fields - Applied Physics Letters - 2014 -
13)Measuring dielectric properties of biological cells as a function of temperature - 2014 IEEE International Power Modulator and High Voltage Conference - 2014 -
14)Compact high-voltage, low-impedance nanosecond pulse generators for biomedical applications - IEEE International Conference on Plasma Science - 2014 -
15)Changes in gap junction-mediated intercellular communication in a cell-monolayer after the exposure to nanosecond pulsed electric fields - IEEE Pulsed Power Conference - 2013 -
16)Effect of pulsed electric fields on cell-cell-communication via gap junctions in cell-monolayers - IEEE International Conference on Plasma Science - 2013 -
17)Operation of a cold DC operated air plasma jet for microbial decontamination - IEEE International Conference on Plasma Science - 2013 -
18)Dielectric response of cancer cells after exposure to single and multiple nanosecond pulses - IEEE International Conference on Plasma Science - 2013 -
19)Long term survival of mice with hepatocellular carcinoma after pulse power ablation with nanosecond pulsed electric fields - Technology in Cancer Research & Treatment - 2012 -
20)Dielectric Evolution of Mammalian Cell Membranes after Exposure to Pulsed Electric Fields - IEEE Transactions on DEI - 2012 -
21)Pulsed electric field induced dielectric evolution of mammalian cells - Proceedings of IEEE IPMHV Conference - 2012 -
22)Pulsed electric field induced conformational changes of mammalian cells revealed by time domain dielectric spectroscopy - IEEE International Conference on Plasma Science - 2012 -
23)Microfluidic impedance spectroscopy as a tool for quantitative biology and biotechnology - Biomicrofluidics - 2012 -
24)Cell Death Induced by Subnanosecond Pulsed Electric Fields at Elevated Temperatures - IEEE Transactions on Plasma Science - 2012 -
25)Modification of dielectric characteristics of cells by intense pulsed electric fields - Proceedings of IEEE Pulsed Power Conference - 2011 -
26)Time domain dielectric spectroscopy of biological cells after pulsed electric field exposure - IEEE CEIDP Conference - 2011 -
27)Pulsed electric field induced changes in dielectric properties of biological cells - IEEE IPMHV Conference - 2010 -
28)Pulsed discharges for medical applications - IEEE International Conference on Plasma Science - 2010 -
29)Pulsed electric field induced changes in dielectric properties of biological cells - 2009 IEEE Pulsed Power Conference - 2009 -
30)Tumor treatment with nanosecond pulsed electric fields - 2009 IEEE Pulsed Power Conference - 2009 -
31)First response of mammalian cells to nanosecond pulsed electric fields - IEEE International Conference on Plasma Science - 2008 -
32)Nanosecond Pulse Generator with Variable Pulse Duration for the Study of Pulse Induced Biological Effects - IEEE IPMHV Conference - 2008 -
33)Dynamic Contrast-Enhanced Magnetic Resonance Images of the Kidney - IEEE Engineering in Medicine and Biology Magazine - 2008 -



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