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Fluorescence lifetime enables high-resolution analysis of neuromodulator dynamics across time and animals
View ORCID ProfilePingchuan Ma, Peter Chen, Elizabeth Tilden, Samarth Aggarwal, Anna Oldenborg, View ORCID ProfileYao Chen
doi: https://doi.org/10.1101/2022.09.28.510014
Pingchuan Ma
1Department of Neuroscience, Washington University in St. Louis, St. Louis, MO 63110
2Ph.D. Program in Neuroscience, Washington University in St. Louis
Peter Chen
1Department of Neuroscience, Washington University in St. Louis, St. Louis, MO 63110
3Master’s Program in Biomedical Engineering, Washington University in St. Louis
Elizabeth Tilden
1Department of Neuroscience, Washington University in St. Louis, St. Louis, MO 63110
2Ph.D. Program in Neuroscience, Washington University in St. Louis
Samarth Aggarwal
1Department of Neuroscience, Washington University in St. Louis, St. Louis, MO 63110
Anna Oldenborg
1Department of Neuroscience, Washington University in St. Louis, St. Louis, MO 63110
Yao Chen
1Department of Neuroscience, Washington University in St. Louis, St. Louis, MO 63110

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Posted March 17, 2023.
Fluorescence lifetime enables high-resolution analysis of neuromodulator dynamics across time and animals
Pingchuan Ma, Peter Chen, Elizabeth Tilden, Samarth Aggarwal, Anna Oldenborg, Yao Chen
bioRxiv 2022.09.28.510014; doi: https://doi.org/10.1101/2022.09.28.510014
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