Zhenli HUANG
·Scientific Research
Research Field
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We are interested in the development and applications of super-resolution localization microscopy, including mainly:
1) Algorithms, software and hardware platforms for massive data processing in super-resolution localization microscopy:
To overcome the challenges of massive data processing (including transfer, store, and analyze) in super-resolution localization microscopy, which are troublesome for classical EMCCD cameras and are thought to bring great growing pains for better-performing sCMOS cameras, we are working to develop efficient data processing algorithms, user-friendly software and hybrid-computing platforms.
2) Selection and optimal use of low-light cameras for super-resolution localization microscopy:
The selection and optimal use of low-light cameras is important but also confusing in super-resolution localization microscopy. We are currently working with several camera manufactures to evaluate and understand the imaging performance of low-light cameras, and try to offer a guide to the selection and optimal use of low-light cameras for single molecule imaging and super-resolution localization microscopy.
3) Enhancing the power and versatility of super-resolution localization microscopy:
We are working to enhance the power and versatility of the technique: super-resolution localization microscopy with large field-of-view, super-resolution localization microscopy for tracing and visualizing neuronal circuits at single synapse resolution, super-resolution localization microscopy for blood analysis. We are also working with chemists to develop new super-resolution probes, and biologists to study fundamental questions in life sciences.
Paper Publications
MORE+- [1] L.C. Li, B. Xin, W.B. Kuang, Z.W. Zhou, Z. L. Huang*, Divide and Conquer: Real-time maximum likelihood fitting of multiple emitters for super-resolution localization microscopy, Optics Express, 2019, 27, 21029-21049.
- [2] Y. J. Wang, B. Xin, and Z. L. Huang*, Structure-Resolving Index: an efficient criterion for ending image acquisition in super-resolution localization microscopy, Optics Letters, 2019, 44, 2633-2636.
- [3] S. S. Chen, J. Wang, B. Xin, Y. B. Yang, Y. R. Ma, Y. Zhou, L. J. Yuan, Z. L. Huang*, and Q. Yuan*, Direct Observation of Nanoparticles within Cells at Subcellular Levels by Super-Resolution Fluorescence Imaging, Analytical Chemistry, 2019, 91, 5747−5752.
- [4] Y. L. Wang§, C. Fan§, B. Xin§, J. P. Zhang, T. Luo, Z. Q. Chen, Q.Y. Zhou, Q. Yu, X. N. Li, Z. L. Huang, C. Li,* M. Q. Zhu*, and B. Z. Tang*, AIE-based super-resolution imaging probes for β-amyloid plaques in mouse brains, Materials Chemistry Frontiers, 2018, 2, 1554-1562.
- [5] B. Yang, X. J. Liu, Y. Yao, X. Jiang, X. Z. Wang, H. Yang, J. Y. Sun, Y. Miao, W. Wang, Z. L. Huang, Y. Wang, Q. Tang, S. Rayner, W. J. Britt, M. A. McVoy, M. H. Luo*, F. Zhao*, WDR5 Facilitates Human Cytomegalovirus Replication by Promoting Capsid Nuclear Egress, Journal of Virology, 2018, 92, e00207-18.
Patents
MORE+- [1] Data processing system and method for super-resolution localiation microscopy
- [2] Multimode fiber combiner for coupling multiwatt lasers
- [3] Real-time single molecule localization method and system with sufficient localization precision
- [4] Super-resolution localization microscopy method and system for high-speed and continous imaging
- [5] A fast super-resolution microscopy method and system based on single molecule localization
Published Books
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Research Projects
MORE+- [1] New optical molecule imaging methods and technologies for studying protein function in vivo, 2011-01-01-2015-08-01
- [2] Mechanism and technologies for fast and nanometer-resolutoin optical imaging, 2015-01-01-2019-12-01
- [3] Novel molecule labelling technique and its applications in multi-modality optical imaging of neuronal activities, 2005-01-01-2007-12-01
- [4] Construction of organic two-photon FRET probes and their applications in apoptosis, 2010-01-01-2012-12-01
- [5] Large-area super-resolution localization microscopy for ultrastructural mapping of neural circuitry in multiple brain regions, 2014-01-01-2016-12-01