Fluorescence microscopy is a powerful tool for the rapid identification of target organisms. However, natural autofluorescence often interferes with identification. Time-gated luminescence microscopy (TGLM) uses luminescent labels with long persistence in conjunction with digital imaging to regain discriminative power. Following the excitation pulse, short-lived autofluorescence decays rapidly whereas the long-lived emission from lanthanide doped polymer beads persists for hundreds of microseconds. After a short resolving period, a gated high gain camera captures the persistent emission in the absence of short-lived fluorescence. We report on the development of a TGLM software system for automated scanning of microscope slides, and show its...
Many microorganisms have a very low threshold (100 μs, and the autofluorescence backgrounds, <0.1 μs...
Thesis by publication.Bibliography: Pages 135-138.Chapter 1: Introduction -- Chapter 2: Multi-colour...
The method of time-gated detection of long-lifetime (1-2,000 µs) luminescence-labeled microorganisms...
Many naturally occurring materials are autofluorescent, a property that can reduce the discriminativ...
Autofluorescent algal samples were spiked with europium beads for analysis on a novel all-solid-stat...
Application of standard immuno-fluorescence microscopy techniques for detection of rare-event microo...
Time-gated luminescence microscopy using long-lifetime molecular probes can effectively eliminate au...
Background. The unique discriminative ability of immunofluorescent probes can be severely compromise...
The sensitivity of filter-based fluorescence microscopy techniques is limited by autofluorescence ba...
The abundance of naturally fluorescing components (autofluorophors) encountered in environmentally s...
Fluorescence microscopy is a fundamental technique for the life sciences, where biocompatible and ph...
The ubiquity of naturally fluorescing components (autofluorophores) encountered in most biological s...
In advanced cytometry, a fundamental challenge for rapid specific detection of rare-event micro-orga...
An optical microscope capable of measuring time resolved luminescence (phosphorescence and delayed f...
AbstractThe combination of temporal and spectral resolution in fluorescence microscopy based on long...
Many microorganisms have a very low threshold (100 μs, and the autofluorescence backgrounds, <0.1 μs...
Thesis by publication.Bibliography: Pages 135-138.Chapter 1: Introduction -- Chapter 2: Multi-colour...
The method of time-gated detection of long-lifetime (1-2,000 µs) luminescence-labeled microorganisms...
Many naturally occurring materials are autofluorescent, a property that can reduce the discriminativ...
Autofluorescent algal samples were spiked with europium beads for analysis on a novel all-solid-stat...
Application of standard immuno-fluorescence microscopy techniques for detection of rare-event microo...
Time-gated luminescence microscopy using long-lifetime molecular probes can effectively eliminate au...
Background. The unique discriminative ability of immunofluorescent probes can be severely compromise...
The sensitivity of filter-based fluorescence microscopy techniques is limited by autofluorescence ba...
The abundance of naturally fluorescing components (autofluorophors) encountered in environmentally s...
Fluorescence microscopy is a fundamental technique for the life sciences, where biocompatible and ph...
The ubiquity of naturally fluorescing components (autofluorophores) encountered in most biological s...
In advanced cytometry, a fundamental challenge for rapid specific detection of rare-event micro-orga...
An optical microscope capable of measuring time resolved luminescence (phosphorescence and delayed f...
AbstractThe combination of temporal and spectral resolution in fluorescence microscopy based on long...
Many microorganisms have a very low threshold (100 μs, and the autofluorescence backgrounds, <0.1 μs...
Thesis by publication.Bibliography: Pages 135-138.Chapter 1: Introduction -- Chapter 2: Multi-colour...
The method of time-gated detection of long-lifetime (1-2,000 µs) luminescence-labeled microorganisms...