Lifetime imaging microscopy with sub-micron resolution provides essential understanding of living systems by allowing both the visualisation of their structure, and the sensing of bio-relevant analytes in vivo using external probes. Chemistry is pivotal for the development of the next generation of bio-tools, where contrast, sensitivity, and molecular specificity facilitate observation of processes fundamental to life. A fundamental limitation at present is the nanosecond lifetime of conventional fluorescent probes which typically confines the sensitivity to sub-nanosecond changes, whilst nanosecond background autofluorescence compromises the contrast. High-resolution visualization with complete background rejection and simultaneous mapping...
Multiphoton microscopy in combination with Fluorescence Lifetime Imaging Microscopy (FLIM) is now a ...
Time-gated luminescence microscopy using long-lifetime molecular probes can effectively eliminate au...
Traditional fluorescence microscopy is blind to molecular microenvironment information that is prese...
Lifetime imaging microscopy with sub-micron resolution provides essential understanding of living sy...
Using a combination of multiphoton excitation, confocal scanning, TCSPC and beam blanking in conjunc...
Luminescent metal complexes are increasingly being investigated as emissive probes and sensors for c...
The first transition-metal complex-based two-photon absorbing luminescence lifetime probes for cellu...
The first transition-metal complex-based two-photon absorbing luminescence lifetime probes for cellu...
We demonstrate diffraction limited multiphoton imaging in a massively parallel, fully addressable ti...
Advances in time-resolved fluorescence spectroscopy can be applied to cellular imaging. Fluorescence...
This monograph focuses on modern femtosecond laser microscopes for two photon imaging and nanoproces...
This work explores time-resolved emission imaging microscopy (TREM) for noninvasive imaging and mapp...
In this Letter, we will discuss the development of a multifocal multiphoton fluorescent lifetime ima...
In this work we demonstrate that time domain techniques can be used successfully to monitor realtive...
The use of optical techniques to interrogate wide ranging samples from semiconductors to biological ...
Multiphoton microscopy in combination with Fluorescence Lifetime Imaging Microscopy (FLIM) is now a ...
Time-gated luminescence microscopy using long-lifetime molecular probes can effectively eliminate au...
Traditional fluorescence microscopy is blind to molecular microenvironment information that is prese...
Lifetime imaging microscopy with sub-micron resolution provides essential understanding of living sy...
Using a combination of multiphoton excitation, confocal scanning, TCSPC and beam blanking in conjunc...
Luminescent metal complexes are increasingly being investigated as emissive probes and sensors for c...
The first transition-metal complex-based two-photon absorbing luminescence lifetime probes for cellu...
The first transition-metal complex-based two-photon absorbing luminescence lifetime probes for cellu...
We demonstrate diffraction limited multiphoton imaging in a massively parallel, fully addressable ti...
Advances in time-resolved fluorescence spectroscopy can be applied to cellular imaging. Fluorescence...
This monograph focuses on modern femtosecond laser microscopes for two photon imaging and nanoproces...
This work explores time-resolved emission imaging microscopy (TREM) for noninvasive imaging and mapp...
In this Letter, we will discuss the development of a multifocal multiphoton fluorescent lifetime ima...
In this work we demonstrate that time domain techniques can be used successfully to monitor realtive...
The use of optical techniques to interrogate wide ranging samples from semiconductors to biological ...
Multiphoton microscopy in combination with Fluorescence Lifetime Imaging Microscopy (FLIM) is now a ...
Time-gated luminescence microscopy using long-lifetime molecular probes can effectively eliminate au...
Traditional fluorescence microscopy is blind to molecular microenvironment information that is prese...