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Du, Jiajun; Su, Yapeng et al. (2020) Raman-guided subcellular pharmaco-metabolomics for metastatic melanoma cells Nature Communications; Vol. 11;
Miao, Kun; Wei, Lu (2020) Live-Cell Imaging and Quantification of PolyQ Aggregates by Stimulated Raman Scattering of Selective Deuterium Labeling ACS Central Science; Vol. 6; No. 4;
Wei, Mian; Shi, Lingyan et al. (2019) Volumetric chemical imaging by clearing-enhanced stimulated Raman scattering microscopy Proceedings of the National Academy of Sciences of the United States of America; Vol. 116; No. 14;
Shi, Lixue; Xiong, Hanqing et al. (2018) Electronic Resonant Stimulated Raman Scattering Micro-Spectroscopy Journal of Physical Chemistry B; Vol. 122; No. 39;
Wei, Lu; Min, Wei (2018) Electronic Preresonance Stimulated Raman Scattering Microscopy Journal of Physical Chemistry Letters; Vol. 9; No. 15;
Cheng, Qian; Wei, Lu et al. (2018) Operando and three-dimensional visualization of anion depletion and lithium growth by stimulated Raman scattering microscopy Nature Communications; Vol. 9;
Hu, Fanghao; Zeng, Chen et al. (2018) Supermultiplexed optical imaging and barcoding with engineered polyynes Nature Methods; Vol. 15; No. 3;
Wei, Lu; Chen, Zhixing et al. (2017) Super-multiplex vibrational imaging Nature; Vol. 544; No. 7651;
Hu, Fanghao; Lamprecht, Michael R. et al. (2016) Bioorthogonal chemical imaging of metabolic activities in live mammalian hippocampal tissues with stimulated Raman scattering Scientific Reports; Vol. 6;
Wei, Lu; Hu, Fanghao et al. (2016) Live-Cell Bioorthogonal Chemical Imaging: Stimulated Raman Scattering Microscopy of Vibrational Probes Accounts of Chemical Research; Vol. 49; No. 8;
Hu, Fanghao; Chen, Zhixing et al. (2015) Vibrational Imaging of Glucose Uptake Activity in Live Cells and Tissues by Stimulated Raman Scattering Angewandte Chemie International Edition; Vol. 54; No. 34;
Wei, Lu; Shen, Yihui et al. (2015) Imaging complex protein metabolism in live organisms by stimulated Raman scattering microscopy with isotope labeling ACS Chemical Biology; Vol. 10; No. 3;
Hu, Fanghao; Chen, Zhixing et al. (2015) Vibrational Imaging of Glucose Uptake in Live Cells and Tissues by Stimulated Raman Scattering Microscopy Biophysical Journal; Vol. 108; No. 2; 59th Annual Meeting of the Biophysical-Society, 7-11 February 2015 , Baltimore, MD
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Shen, Yihui; Xu, Fang et al. (2014) Live-cell quantitative imaging of proteome degradation by stimulated Raman scattering Angewandte Chemie International Edition; Vol. 53; No. 22;
Hu, Fanghao; Wei, Lu et al. (2014) Live-cell vibrational imaging of choline metabolites by stimulated Raman scattering coupled with isotope-based metabolic labeling Analyst; Vol. 139; No. 10;
Wei, Lu; Hu, Fanghao et al. (2014) Live-cell imaging of alkyne-tagged small biomolecules by stimulated Raman scattering Nature Methods; Vol. 11; No. 4;
Wei, Lu; Yu, Yong et al. (2013) Vibrational imaging of newly synthesized proteins in live cells by stimulated Raman scattering microscopy Proceedings of the National Academy of Sciences of the United States of America; Vol. 110; No. 28;
Wei, Lu; Min, Wei (2013) What can stimulated emission do for bioimaging? Annals of the New York Academy of Sciences; Vol. 1293;
Xu, Fang; Wei, Lu et al. (2013) Frustrated FRET for high-contrast high-resolution two-photon imaging Optics Express; Vol. 21; No. 12;
Gatzogiannis, Evangelos; Chen, Zhixing et al. (2012) Mapping protein-specific micro-environments in live cells by fluorescence lifetime imaging of a hybrid genetic-chemical molecular rotor tag Chemical Communications; Vol. 48; No. 69;
Chen, Zhixing; Wei, Lu et al. (2012) Extending the fundamental imaging-depth limit of multi-photon microscopy by imaging with photo-activatable fluorophores Optics Express; Vol. 20; No. 17;
Wei, Lu; Chen, Zhixing et al. (2012) Stimulated emission reduced fluorescence microscopy: a concept for extending the fundamental depth limit of two-photon fluorescence imaging Biomedical Optics Express; Vol. 3; No. 6;
Wei, Lu; Min, Wei (2012) Pump-probe optical microscopy for imaging nonfluorescent chromophores Analytical and Bioanalytical Chemistry; Vol. 403; No. 8;