Biography and Research Information
OverviewAI-generated summary
Elric Dion Pott's research focuses on developing and applying advanced fluorescence microscopy techniques for high-throughput imaging. His work has led to the publication of several papers detailing methods for spectrally resolved, super-resolution fluorescence microscopy. These methods aim to improve photon usage and enable rapid, hyperspectral mapping of biological samples, such as lipid membranes, with single-molecule sensitivity. Pott collaborates with researchers at the University of Arkansas at Fayetteville, including James Ethan Batey, Meek Yang, Joie Embree, and Bin Dong, with whom he has co-authored multiple publications.
His recent publications investigate techniques like SP-STORM (Single-Particle Spectrally Resolved Super-resolution Optical Microscopy) and its application to hyperspectral and multiplexed imaging. These advancements contribute to the field of molecular biology techniques and applications by providing faster and more detailed visualization capabilities. Pott's work is characterized by its focus on enhancing the speed and spectral resolution of super-resolution microscopy, enabling more comprehensive studies of cellular structures and dynamics.
Metrics
- h-index: 1
- Publications: 6
- Citations: 6
Selected Publications
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High-Throughput Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM (2026)
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Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity (2025)
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Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity (2025)
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High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage (2024)
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Spectrally Resolved Localization Microscopy with Ultrahigh-Throughput (2024)
Collaboration Network
Top Collaborators
- High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage
- Spectrally Resolved Localization Microscopy with Ultrahigh-Throughput
- High Throughput Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
Showing 5 of 6 shared publications
- High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage
- Spectrally Resolved Localization Microscopy with Ultrahigh-Throughput
- High Throughput Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
Showing 5 of 6 shared publications
- High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage
- Spectrally Resolved Localization Microscopy with Ultrahigh-Throughput
- High Throughput Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
Showing 5 of 6 shared publications
- High Throughput Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
- High-Throughput Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM
- High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage
- Spectrally Resolved Localization Microscopy with Ultrahigh-Throughput
- High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage
- Spectrally Resolved Localization Microscopy with Ultrahigh-Throughput
- High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage
- Spectrally Resolved Localization Microscopy with Ultrahigh-Throughput
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