Biography
Feifei Wang is currently an Assistant Professor at the Department of Electrical and Computer Engineering and an Adjunct Assistant Professor at the Department of Chemistry, The University of Hong Kong. Before joining HKU, he was a postdoctoral scholar at the Department of Chemistry, Stanford University. He obtained his PhD from the University of Chinese Academy of Sciences and Shenyang Institute of Automation (SIA), Chinese Academy of Sciences. Google Scholar: https://scholar.google.com/citations?user=QmXTkS0AAAAJ&hl=zh-CN Research Interests: Near-infrared II (1000-3000nm) fluorescence imaging, super-resolution imaging, AI enhanced biomedical imaging, advanced biomedical microscopy, and technologies have a broad and profound impact on biomedical applications. Selected Publications: 1. F. Wang, Y. Zhong, O. Bruns,Y. Liang and H. Dai (2024), In vivo NIR-II fluorescence imaging for biology and medicine, Nature Photonics, 18, 535–547 2. F. Ren#, F. Wang#, A. Baghdasaryan#, Y.Zhong, F. Salazar, Y. Li, C. Xu, R. Hsu, Y. Jiang, H. Liu, Z. Ma, J. Li, G. Zhu, K. K. Wong, R. Willis, E. Mellins, A. Wu and H. Dai (2023), Infrared-emitting nanoprobes for cancer vaccine and in vivo molecular imaging of immune responses, Nature Biomedical Engineering, https://doi.org/10.1038/s41551-023-01083-5 3. F. Wang#, F. Ren#, Z. Ma#, L. Qu, R. Gourgues, I. E. Zadeh, Y. Zhong, C. Xu, A. Baghdasaryan, J. Li, N. Los, A. Fognini, J. Qin-Dregely and H. Dai (2022), In vivo non-invasive confocal fluorescence imaging beyond 1700 nm using superconducting nanowire single-photon detectors, Nature Nanotechnology, 17, 653–660. (#equally contributed) 4. F. Wang#, L. Qu#, F. Ren#, A. Baghdasaryan#, R. Hsu#, P. Liang, J. Li, G. Zhu, Z. Ma and H. Dai (2022), High precision tumor resection down to few-cell level guided by NIR-IIb molecular fluorescence imaging, Proceedings of the National Academy of Sciences, 119, e2123111119. 5. A. Baghdasaryan#, F. Wang#, F. Ren, Z. Ma, J. Li, L. Grigoryan, C. Xu and H. Dai (2022), Super-stealth molecular gold clusters for lymph node imaging in the NIR-II optical window, Nature Communications, 13, 5613. 6. F. Wang#, Z. Ma#, Y. Zhong#, F. Salazar, C. Xu, F. Ren, L. Qu, A. M. Wu and H. Dai (2021), In vivo NIR-II structured-illumination light-sheet microscopy, Proceedings of the National Academy of Sciences, 118, e2023888118. 7. Z. Ma#, F. Wang#, Y. Zhong#, F. Salazar, J. Li, M. Zhang, F. Ren, A. M. Wu and H. Dai (2020), Cross-link-functionalized nanoparticles for rapid excretion in nanotheranostic applications, Angewandte Chemie International Edition, 59, 20552-20560. 8. F. Wang#, H. Wan#, Z. Ma#, Q. Sun, Y. Tian, L. Qu, H. Du, M. Zhang, L. Li, H. Ma, J. Luo, Y. Liang, W. J. Li, G. Hong, L. Liu and H. Dai (2019), Light-sheet microscopy in the near-infrared II window, Nature Methods, 16, 545-552. 9. Y. Zhong#, Z. Ma#, F. Wang#, X. Wang, Y. Yang, Y. Liu, X. Zhao, J. Li, H. Du, M. Zhang, Q. Cui, S. Zhu, Q. Sun, H. Wan, Y. Tian, Q. Liu, W. Wang, K. C. Garcia and H. Dai (2019), In vivo molecular imaging for immunotherapy using ultra-bright near-infrared-IIb rare-earth nanoparticles, Nature Biotechnology, 37, 1322-1331. 10. F. Wang#, L. Liu#, H. Yu, Y. Wen, P. Yu, Z. Liu, Y. Wang, and W. J. Li (2016), Scanning superlens microscopy for non-invasive large field-of-view visible light nanoscale imaging, Nature Communications, 7, 13748.
Related Links
Selected Publications
- F. Wang, Y. Zhong, O. Bruns,Y. Liang and H. Dai (2024), In vivo NIR-II fluorescence imaging for biology and medicine, Nature Photonics, 18, 535–547
- F. Ren#, F. Wang#, A. Baghdasaryan#, Y.Zhong, F. Salazar, Y. Li, C. Xu, R. Hsu, Y. Jiang, H. Liu, Z. Ma, J. Li, G. Zhu, K. K. Wong, R. Willis, E. Mellins, A. Wu and H. Dai (2023), Infrared-emitting nanoprobes for cancer vaccine and in vivo molecular imaging of immune responses, Nature Biomedical Engineering, https://doi.org/10.1038/s41551-023-01083-5
- F. Wang#, F. Ren#, Z. Ma#, L. Qu, R. Gourgues, I. E. Zadeh, Y. Zhong, C. Xu, A. Baghdasaryan, J. Li, N. Los, A. Fognini, J. Qin-Dregely and H. Dai (2022), In vivo non-invasive confocal fluorescence imaging beyond 1700 nm using superconducting nanowire single-photon detectors, Nature Nanotechnology, 17, 653–660. (#equally contributed)
- F. Wang#, L. Qu#, F. Ren#, A. Baghdasaryan#, R. Hsu#, P. Liang, J. Li, G. Zhu, Z. Ma and H. Dai (2022), High precision tumor resection down to few-cell level guided by NIR-IIb molecular fluorescence imaging, Proceedings of the National Academy of Sciences, 119, e2123111119.
- A. Baghdasaryan#, F. Wang#, F. Ren, Z. Ma, J. Li, L. Grigoryan, C. Xu and H. Dai (2022), Super-stealth molecular gold clusters for lymph node imaging in the NIR-II optical window, Nature Communications, 13, 5613.

