Research Areas
Biography and Research Information
OverviewAI-generated summary
Elric Dion Pott's research centers on advancements in super-resolution fluorescence microscopy, particularly focusing on spectrally resolved techniques for high-throughput and hyperspectral imaging. His work investigates methods to improve photon usage and map lipid membrane polarity with single-molecule sensitivity. Pott has published six papers on these topics, with recent work appearing in 2024, 2025, and 2026. He has collaborated with researchers at the University of Arkansas at Fayetteville, including James Ethan Batey and Meek Yang, on multiple publications. His scholarship metrics include an h-index of 2 and 10 total citations across his six publications.
Metrics
- h-index: 2
- Publications: 6
- Citations: 10
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 Hyperspectral and Multiplexed Super-Resolution Fluorescence Imaging by SP-STORM (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
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
- 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
Showing 5 of 6 shared publications
- High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
- 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
Showing 5 of 6 shared publications
- High throughput spectrally resolved super-resolution fluorescence microscopy with improved photon usage
- Fast Hyperspectral and Super-Resolved Mapping of Lipid Membrane Polarity with Single-Molecule Sensitivity
- 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
Showing 5 of 6 shared publications
- 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
- 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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