学科 : 生物医学工程
方向 :生物成像、生物传感、神经调控
电子邮件 :weilee@bit.edu.cn
办公地址 :中关村校区新食堂444
个人简历
李玮,北京理工大学特别研究员、副教授、博士生导师,研究方向涵盖生物成像、生物传感与神经调控。长期致力于先进诊疗设备的研发,利用成像、传感及光学、磁学等相关技术实现精准的神经活动检测与闭环神经调控,并推动相关成果在认知增强、疾病诊疗和神经康复等应用场景中的实际落地。已发表学术论文 40 余篇,其中在 Sensors and Actuators B: Chemical、Analytical Chemistry、Nature Reviews Bioengineering 等中科院 Top 期刊发表论文20余篇,总引用数超过 600 次;获授权发明专利 10 余项。
教育培训经历
2015-10至2020-02,博士,电子与电气工程-生物光子,谢菲尔德大学,英国
2014-09至2015-09,硕士,生物纳米技术,谢菲尔德大学,英国
工作经历
2024-08 至今,北京理工大学,医学技术学院,特别研究员,副教授,中国
2021-11至2024-07,博士后,暨南大学&中国科学院自动化研究所,中国
2020-03至2021-10,博士后,谢菲尔德大学,英国
学术任职
《Cyborg and Bionic Systems》期刊青年编委
研究领域
生物成像方向:磁粒子成像技术、OCT 成像技术
生物传感方向:磁粒子谱仪技术、光子晶体检测技术
神经调控方向:磁粒子调控技术、近红外光调控技术
讲授课程
《医学成像原理与图像处理》
教材及专著
参与项目
(1)国家自然科学基金委员会,青年科学基金项目(C类),62501055,面向闭环神经调控的临界偏置磁粒子谱仪高精度测温方法研究,2026年01月至2028年12月,30万元,主持;
(2)国家自然科学基金委员会,国家重大科研仪器研制项目,82227802,面向肿瘤乏氧定量研究的小动物光-磁声一体成像设备,2023-01-01 至 2027-12-31,840万元,参与
(3)广东省基础与应用基础研究基金委员会,区域联合基金-青年基金项目,2022A1515110798,基于PS-OCT/磁粒子成像双模态融合的动脉粥样硬化斑块稳定性研究,2022-10 至 2025-09,10万元,主持
(4)英国工程与自然科学研究理事会(EPSRC),Standard Research,EP/S025944/1,Multi-band optical coherence tomography platform for the development of novel atopic dermatitis treatments,2019-09 至 2023-09,约 862 万元,参与
SCI Journal paper
1. W Li, B F Narice, D O Anumba, and S J Matcher. Polarization-sensitive optical coherence tomography with a conical beam scan for the investigation of birefringence and collagen alignment in the human cervix. Biomedical Optics Express. 2019. 10(8): p. 4190-4206.
2. W Li, S Dai, X Li, Q Li and J Li. Highly sensitive SERS detection of melamine based on 3D Ag@porous silicon photonic crystal. TALANTA. 2024. 280: 126789
3. W Li, X Zhu, X Wang, J Liu, B Liang, T Zheng, and J Li. A rapid, sensitive and real-time monitoring of alcohol content in spirit sample based on stable TiO2-coated porous silicon interferometer. Sensors and Actuators B: Chemical. 2019. 281: p. 359-365.
4. K Wang, Y Du, Z Zhang, K He, Z Cheng, L Yin, D Dong, C Li, W Li, Z Hu, C Zhang, H Hui, C Chi, and J Tian. Fluorescence image-guided tumour surgery. Nature Reviews Bioengineering. 2023. 1(3): p. 161-179.
5. W Li, W Song, B Chen, and S J Matcher. Superparamagnetic graphene quantum dot as a dualmodality contrast agent for confocal fluorescence microscopy and magnetomotive optical coherence tomography. Journal of Biophotonics. 2019. 12(2): p. e201800219.
6. W Li, X Jia, L Yin, Z Yang, H Hui, J Li, W Huang, J Tian, and S Zhang. Advances in magnetic particle imaging and perspectives on liver imaging. iLIVER. 2022. 1(4): p. 237-244.
7. J Yang, W Li, H Li, X Wang, K Xu, Q Li, T Zheng, and J Li Highly Sensitive Microarray Immunoassay for Multiple Mycotoxins on Engineered 3D Porous Silicon SERS Substrate with Silver Nanoparticle Magnetron Sputtering. Analytical Chemistry. 2024, 96(6): p.2425–2434.
8. Y Zhu, W Li, J Yang, Z Li, Q Li, L Xiao, T Tan and J Li. Photonic Microbead Array Digital Time-Resolved Fluorescence Ultrasensitive Platform for Simultaneous Detection of Multiple Mycotoxins. Analytical Chemistry. 2024, 96(42): p.16842-16853.
9. L Yin, W Li, Z Bian, Z Chen, Y Liu, J Zhong, S Zhang, Y Du, H Hui, and Jie Tian. A streamlined 3D magnetic particle imaging system with a two-stage excitation feed-through compensation strategy. IEEE Transactions on Instrumentation and Measurement. 2023. 72:1-10.
10. Z Ji, D Suo, J Jin, X Liu, Y Wang, S Funahashi, W Li, Tianyi Yan, Numerical investigation of acoustic cavitation characteristics of a single gas–vapor bubble in soft tissue under dual-frequency ultrasound. Ultrasonics Sonochemistry. 2024. 111:107061.
EI Journal paper
1. W Li and S Matcher, Novel magnetic graphene quantum dot as dual modality fluorescence/MMOCT contrast agent for tracking epithelial cells. SPIE BiOS. Vol. 10079. 2017: SPIE.
2. W Li, B Narice, D Anumba, and S Matcher, Polarization-sensitive swept-source optical coherence tomography for investigating depth, birefringence, depolarization and orientation of collagen structure of human cervix tissue. SPIE BiOS. Vol. 10867. 2019: SPIE.
3. W Li, B Narice, D Anumba, and S Matcher, In vitro characterization of collagen organization in the human cervix using polarization-sensitive optical coherence tomography (PS-OCT). SPIE BiOS. Vol. 10856. 2019: SPIE.
4. D G Revin, R A Byers, M Q Duan, W Li, and S J Matcher. Visible-light optical coherence tomography platform for the development of novel atopic dermatitis treatment. SPIE BiOS. Vol. 12352. 2023. SPIE.
5. X Hu, R Maiti, J Boadi, W Li, M J Carré, R Lewis, S E Franklin, and S J Matcher. Optical coherence elastography for human finger-pad skin deformation studies. SPIE BiOS. Vol. 9710. 2016. SPIE.
中文论文
专利
(1)李玮; 张水兴; 田捷; 黄文慧; 陈梓威; 张斌 ; 一种高灵敏度的磁粒子成像系统及方法, 2023-12-12, 中国,CN202311212140.0
(2)李玮; 张水兴; 田捷; 陈梓威; 黄文慧; 张斌 ; 基于谐波相位偏转的磁粒子谱仪、定量方法和存储介质, 2024-03-16, 中国, CN202311370124.4
(3)李玮; 张水兴; 田捷; 杨志云; 黄文慧 ; 一种血管内超声探头的在体导航方法, 2023-06-07, 中国, CN202310664960.7
(4)李玮; 张水兴; 田捷; 尹琳; 杨志云 ; 一种高分辨率的手持式OCT成像系统, 2023-03-07, 中国, 202211298869.X
(5)闫天翼; 李玮; 裴广盈; 刘涵; 索鼎杰; 李海欧; 杨晓; 胡梦轩一种基于磁粒子磁热效应的闭环神经调控系统,2025-06-27,中国, CN120204633A
所获奖励/荣誉