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周连群
单位:中国科学院苏州生物医学工程技术研究所
地址:江苏省苏州市高新区科技城科灵路88号
邮编:215163
电话:0512-69588368
个人主页:
实验室介绍:
 
个人简历 Personal resume
周连群,中法博士,研究员,博士生导师,国家高层次人才。现任中国科学院苏州生物医学工程技术研究所,医学检验技术研究室主任,中科院生物医学检验技术重点实验室常务副主任,中国科学技术大学和复旦大学兼职教授,主要从事生物医学传感测量技术和仪器开发。先后入选国家重大人才计划、中国科学院青年促进会优秀会员,江苏省六大人才高峰高层次人才,江苏省333高层次人才等。担任中国生物医学工程学会生物医学测量分会委员、中国微米纳米技术学会青年工作委员会委员、中国医疗器械行业协会POCT分会委员等。承担国家自然科学基金、中科院重大科研仪器设备研制项目、中科院STS重点项目、江苏省重大创新项目、江苏省社会发展重点项目等国家/省部级项目10余项。荣获中国发明协会“发明创业奖”金奖、中国学院院长优秀奖、中国科协优秀论文奖、宝钢教育基金优秀奖、吉林省科技进步一等奖等。发表重要论文70余篇,申请发明专利70余项,授权发明专利30余项,PCT专利6项,获美国授权1项。
 
研究方向 Research direction
1、微纳生物医学传感芯片及系统
2、生物医学检验技术
3、仪器精密机电技术
 
招生信息 Enrollment information
开展微纳生物传感器及其系统、医疗仪器精密机电技术、微流控传感技术、单分子测序技术、新型分子诊断技术、新型生物医学传感及检验技术、核酸传感芯片、空间组学检测等方向研究,欢迎机电、物理、生物医学工程等专业有志青年学子报考。
 
论文专著 The monograph
1) The development of real-time digital PCR technology using an improved data classification method - Biosensors and Bioelectronics - 2022 - Volume 199
2) Integrated microdevice with a windmill-like hole array for the clog-free, efficient, and self-mixing enrichment of circulating tumor cells - Microsystems & Nanoengineering - 2022 - Volume 8
3) The heparinase-linked differential time method allows detection of heparin potency in whole blood with high sensitivity and dynamic range - Biosensors and Bioelectronics - 2022 - Volume 198
4) A RT-LAMP based hydrogen ion selective electrode sensing for effective detection HIV-1 RNA with high-sensitivity - Sensors and Actuators B: Chemical - 2021 - Volume 329
5) Establishment of scalable nanoliter digital LAMP technology for the quantitative detection of multiple myeloproliferative neoplasm molecular markers - Sensors and Actuators B: Chemical - 2021 - Volume 346
6) Heterogeneous modification of through-hole microwell chips for ultralow cross-contamination digital polymerase chain reaction - Analyst - 2020 - Volume 145
7) Sensitivity enhanced, stability improved ethanol gas sensor based onmulti-wall carbon nanotubes functionalized with Pt-Pd nanoparticles - Sensors and Actuators B: Chemical - 2019 - Volume 270
8) Label-free detection of pepsinogen 1 and 2 by polyethylene coating Lamb microfluidic device - Biosensors and Bioelectronics - 2019 - Volume 129
9) Sensitivity improved with Parylene-C passivized on Lamb wave sensor for aPTT measurement through monitoring whole blood reaction - Sensors and Actuators B: Chemical - 2019 - Volume 285
10) Sensitivity-enhanced uncooled infrared detector based on a Lamb wave sensor with polydopamine coating - Applied Physics Letters - 2019 - volume 5
11) High filling rate digital PCR through-hole array chip with double independent S-shaped flow channels - Biomicrofluidics - 2020 - Volume 14
12) Stability Enhanced, Repeatability Improved Parylene-C Passivated on QCM Sensor for aPTT Measurement - Biosensors & Bioelectronics - 2017 - Volume 98
13) Liquid sound velocity and density decoupling on a compact Lamb wave sensor by a two-port local resonating method - IEEE Sensors Journal - 2017 - Issue: 99
14) Dynamic carrier transport modulation for constructing advanced devices with improved performance by piezotronic effect: a brief review - Semiconductor Science and Technology - 2017 - Volume 32
15) A biomimetic bioelectronic tongue: A switch for On- and Off- response of acid sensations - Biosensors & Bioelectronics - 2017 - Volume 92
16) Detection of trace microcystin-LR on a 20 MHz QCM sensor coated with in situ self-assembled MIPs - Talanta - 2015 - Volume 131
 
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