汤曼
姓名 | 汤曼 |
性别 | 女 |
学校 | 武汉纺织大学 |
部门 | 电子与电气工程学院 |
学位 | 博士 |
学历 | 博士研究生 |
职称 | 硕士生导师 |
联系方式 | 【发送到邮箱】 |
邮箱 | 【发送到邮箱】 |
人气 | |
软件产品登记测试 软件著作权666元代写全部资料 实用新型专利1875代写全部资料 集群智慧云企服 / 知识产权申请大平台 微信客服在线:543646 急速申请 包写包过 办事快、准、稳 |
个人简介 Personal Profile 汤曼,理学博士,现就职于武汉纺织大学电子与电气工程学院,讲师。主要从事微流控芯片相关的生物、化学、医学等方面的分析和检测,在循环肿瘤细胞检测,活体检测,微流控传感设备,医疗检测装备等方面有深厚的研究基础。现主持自然科学基金1项,参与国家自然基金项目2项。已在国际权威杂志上发表SCI论文20余篇,包括Lab Chip, Analytical Chemistry, Biosensors & Bioelectronics等,其中第一作者或通讯作者5篇,申请发明专利1项。 研究方向Research Directions 微流控芯片 2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行整体布局设计。 整体布局设计。 科研项目 国家自然科学基金委员会,青年项目,22004094,高灵敏微流控外泌体检测平台及其在免疫治疗疗效预测中的应用,2021-01-01 至 2023-12-01,24万元,在研,主持 研究成果 1. Tang, M.; Wen, C.-Y.;Wu, L.-L.; Hong, S.-L.; Hu, J.; Xu, C.-M.; Pang, D.-W.; Zhang, Z.-L., A Chip Assisted Immunomagnetic Separation System for The Efficient Capture and In SituIdentification of Circulating Tumor Cells. Lab Chip 2016, 16 (7), 1214-1223. ( IF=6.045)2. Tang, M.;Xia, H.-F.; Xu, C.-M.; Feng, J.; Ren, J.-G.; Miao, F.; Wu, M.; Wu, L.-L.; Pang,D.-W.; Chen, G.; Zhang, Z.-L., Magnetic Chip Based Extracorporeal Circulation:A New Tool for Circulating Tumor Cell in Vivo Detection. Anal. Chem. 2019, 91 (23), 15260-15266. (IF=6.32)3. Tang, M.; Liu, F.; Lei, J.; Ai, Z.; Hong, S.-L.; Zhang, N.; Liu, K., Simple and Convenient Microfluidic Flow Rate Measurement Based on Microbubble Image Velocimetry. Microfluid. Nanofluid. 2019, 23 (11), 118. (IF=6.32)4. Wang, S.;Hong, S.; Cai, S.; Lei, J.; Chen, J.; Zhang, N.; Ai, Z.; Liu, K.; Tang, M., Negative Depletion Mediated Brightfield Circulating Tumour Cell Identification Strategy on Microparticle-Based Microfluidic Chip. J. Nanobiotechnol. 2020,18 (1), 70. (通讯作者,IF=6.52)5. Hong, S.-L.; Tang,M.; Chen, Z.; Ai, Z.; Liu, F.; Wang, S.; Zhang, N.; Liu, K.,High-Performance Multiplex Microvalves Fabrication and Using for Tumor Cells Staining on A Microfluidic Chip. Biomed. Microdevices 2019, 21 (4), 87. (IF=2.18)6. Xu, C. M.; Tang, M.; Feng, J.; Xia, H. F.; Wu, L. L.; Pang, D. W.; Chen, G.; Zhang, Z. L., A Liquid Biopsy-Guided Drug Release System for Cancer Theranostics: Integrating Rapid Circulating Tumor Cell Detection and Precision Tumor Therapy. Lab Chip 2020, 20 (8), 1418-1425. ( IF=6.045)7. Wu, L. L.; Tang,M.; Zhang, Z. L.; Qi, C. B.; Hu, J.; Ma, X. Y.; Pang, D. W., Chip-Assisted Single-Cell Biomarker Profiling of Heterogeneous Circulating Tumor Cells Using Multifunctional Nanospheres. Anal. Chem. 2018, 90 (17), 10518-10526. (IF=6.32)8. Wen, C. Y.; Tang,M.; Hu, J.; Wu, L. L.; Pang, D. W.; Zeng, J. B.; Li, X. Y., Determination of the Absolute Number Concentration of Nanoparticles and the Active Affinity Sites on Their Surfaces. Anal. Chem. 2016, 88 (20), 10134-10142. (IF=6.32)9. Guo, P. L.; Tang,M.; Hong, S. L.; Yu, X.; Pang, D. W.; Zhang, Z. L., Combination of Dynamic Magnetophoretic Separation and Stationary Magnetic Trap for Highly Sensitiveand Selective Detection of Salmonella Typhimurium in Complex Matrix. Biosens. Bioelectron. 2015, 74, 628-636. (IF=10.26)10. Wu, L. L.;Zhang, Z. L.; Tang, M.; Zhu, D. L.; Dong, X. J.; Hu, J.; Qi, C. B.;Tang, H. W.; Pang, D. W., Spectrally Combined Encoding for Profiling Heterogeneous Circulating Tumor Cells Using a Multifunctiona lNanosphere-Mediated Microfluidic Platform. Angew. Chem. Int. Ed. Engl. 2020, 59 (28), 11240-11244. (IF=12.96)11. Hong, S. L.; Wan, Y. T.; Tang, M.; Pang, D. W.; Zhang, Z. L., Multifunctional Screening Platform for the Highly Efficient Discovery of Aptamers with High Affinity and Specificity. Anal. Chem. 2017, 89 (12), 6535-6542. (IF=6.32)12. Hong,S.-L.; Xiang, M.-Q.; Tang, M.; Pang, D.-W.; Zhang, Z.-L., Ebola Virus Aptamers: From Highly Efficient Selection to Application on Magnetism-Controlled Chips. Anal. Chem. 2019, 91 (5), 3367-3373. (IF=6.32)13. Hu, J.;Jiang, Y.-Z.; Tang, M.; Wu, L.-L.; Xie, H.-y.; Zhang, Z.-L.; Pang,D.-W., Colorimetric-Fluorescent-Magnetic Nanosphere-Based Multimodal Assay Platform for Salmonella Detection. Anal. Chem. 2019, 91 (1), 1178-1184. (IF=6.32)14. Lv, C.; Zhang, T.-Y.; Lin, Y.; Tang, M.; Zhai, C.-H.; Xia, H.-F.; Wang, J.; Zhang, Z.-L.; Xie, Z.-X.; Chen, G.; Pang, D.-W., Transformation of Viral Light Particles into Near-Infrared Fluorescence Quantum Dot-Labeled ActiveTumor-Targeting Nanovectors for Drug Delivery. Nano Lett. 2019, 19 (10), 7035-7042. (IF=11.24)15. Hu, J.; Zhang, Z.-L.; Wen, C.-Y.; Tang, M.; Wu, L.-L.; Liu, C.; Zhu, L.; Pang,D.-W., Sensitive and Quantitative Detection of C-Reaction Protein Based onImmunofluorescent Nanospheres Coupled with Lateral Flow Test Strip. Anal. Chem. 2016, 88 (12), 6577-6584. (IF=6.32)16. Wu, L. L.; Wen, C. Y.; Hu, J.; Tang, M.; Qi, C. B.; Li, N.; Liu, C.; Chen, L.; Pang, D. W.; Zhang, Z. L., Nanosphere-Based One-Step Strategy for Efficient and Nondestructive Detection of Circulating Tumor Cells. Biosens. Bioelectron. 2017,94, 219-226. (IF=10.26)17. Hong, S.L.; Zhang, Y. N.; Liu, Y. H.; Tang, M.; Pang, D. W.; Wong, G.; Chen, J.J.; Qiu, X. G.; Gao, G. F.; Liu, W. J.; Bi, Y. H.; Zhang, Z. L., Cellular-Beacon-Mediated Counting for the Ultrasensitive Detection of Ebola Virus on an Integrated Micromagnetic Platform. Anal. Chem. 2018, 90 (12), 7310-7317. (IF=6.32)18. Wang, S.;Ai, Z.; Zhang, Z.; Tang, M.; Zhang, N.; Liu, F.; Han, G.; Hong, S.-L.;Liu, K., Simultaneous and Automated Detection of Influenza A Virus Hemagglutinin H7 And H9 Based on Magnetism and Size Mediated Microfluidic Chip.Sens. Actuators, B 2020, 308, 127675. (IF=7.10)19. Wen, C.-Y.;Jiang, Y.-Z.; Li, X.-Y.; Tang, M.; Wu, L.-L.; Hu, J.; Pang, D.-W.; Zeng,J.-B., Efficient Enrichment and Analyses of Bacteria at Ultralow Concentrationwith Quick-Response Magnetic Nanospheres. ACS Appl. Mater. Interfaces 2017, 9 (11), 9416-9425. (IF=8.76)20. Wen, C.-Y.;Wu, L.-L.; Zhang, Z.-L.; Liu, Y.-L.; Wei, S.-Z.; Hu, J.; Tang, M.; Sun,E.-Z.; Gong, Y.-P.; Yu, J.; Pang, D.-W., Quick-Response Magnetic Nanospheresfor Rapid, Efficient Capture and Sensitive Detection of Circulating Tumor Cells. ACS Nano 2014, 8 (1), 941-949. (IF=14.59)21. Wen, C.-Y.; Xie, H.-Y.; Zhang, Z.-L.; Wu, L.-L.; Hu, J.; Tang, M.; Wu, M.; Pang,D.-W., Fluorescent/magnetic micro/nano-spheres based on quantum dots and/or magnetic nanoparticles: preparation, properties, and their applications in cancer studies. Nanoscale 2016, 8 (25), 12406-12429. (IF=6.90)22. Ma, X.-Y.; Wu, L.-L.; Chen, L.; Qin, Y.-H.; Hu, J.; Tang, M.; Xu, C.-M.; Qi, C.-B.; Zhang, Z.-L.; Pang, D.-W., Enhanced and High-Purity Enrichment of CirculatingTumor Cells Based on Immunomagnetic Nanospheres. ACS Appl. Nano Mater. 2018,1 (8), 4019-4027.23. Chen, L.;Wu, L. L.; Zhang, Z. L.; Hu, J.; Tang, M.; Qi, C. B.; Li, N.; Pang, D.W., Biofunctionalized Magnetic Nanospheres-Based Cell Sorting Strategy fo rEfficient Isolation, Detection and Subtype Analyses of Heterogeneous Circulating Hepatocellular Carcinoma Cells. Biosens. Bioelectron. 2016, 85, 633-640. (IF=10.26) 学生信息 当前位置:教师主页 > 学生信息 入学日期 所学专业 学号 学位 招生信息 当前位置:教师主页 > 招生信息 招生学院 招生专业 研究方向 招生人数 推免人数 考试方式 招生类别 招生年份 |