Wide-field time-correlated single photon counting detection techniques, where the position and the arrival time of the photons are recorded simultaneously using a camera, have made some advances recently. The technology and instrumentation used for this approach is employed in areas such as nuclear science, mass spectroscopy and positron emission tomography, but here, we discuss some of the wide-field TCSPC methods, for applications in fluorescence microscopy. We describe work by us and others as presented in the Ulitima fast imaging and tracking conference at the Argonne National Laboratory in September 2018, from phosphorescence lifetime imaging (PLIM) microscopy on the microsecond time scale to fluorescence lifetime imaging (FLIM) on the...
Lifetime imaging microscopy with sub-micron resolution provides essential understanding of living sy...
Localizing photon arrivals with high spatial (megapixel) and temporal (sub-nanosecond) resolution wo...
A 512 × 16 single photon avalanche diode (SPAD)-based line sensor is designed in a 0.13- μm CMOS ima...
Fluorescence microscopy is a powerful imaging technique used in the biological sciences to identify ...
Fast frame rate complementary metal–oxide–semiconductor cameras in combination with photon counting ...
The use of optical techniques to interrogate wide ranging samples from semiconductors to biological ...
Fast frame rale CMOS cameras in combination with photon counting intensifiers can be used for fluore...
Fluorescence lifetime imaging microscopy (FLIM) is a key technology that provides direct insight int...
Fluorescence lifetime imaging (FLIM) is widely applied to obtain quantitative information from fluor...
Time-correlated single photon counting (TCSPC) is commonly used to measure the lifetime of fluoresce...
A new hardware-friendly bi-exponential fluorescence lifetime imaging (FLIM) algorithm has been propo...
Measuring fluorescence lifetimes of fast-moving cells or particles have broad applications in biomed...
We present a CMOS chip 256 × 2 single photon avalanche diode (SPAD) line sensor, 23.78 µm pitch, 43....
The capability to resolve the contributions from spectroscopically overlapping fluorophores has enab...
We report a fluorescence lifetime imaging technique that uses the time integrated response to a peri...
Lifetime imaging microscopy with sub-micron resolution provides essential understanding of living sy...
Localizing photon arrivals with high spatial (megapixel) and temporal (sub-nanosecond) resolution wo...
A 512 × 16 single photon avalanche diode (SPAD)-based line sensor is designed in a 0.13- μm CMOS ima...
Fluorescence microscopy is a powerful imaging technique used in the biological sciences to identify ...
Fast frame rate complementary metal–oxide–semiconductor cameras in combination with photon counting ...
The use of optical techniques to interrogate wide ranging samples from semiconductors to biological ...
Fast frame rale CMOS cameras in combination with photon counting intensifiers can be used for fluore...
Fluorescence lifetime imaging microscopy (FLIM) is a key technology that provides direct insight int...
Fluorescence lifetime imaging (FLIM) is widely applied to obtain quantitative information from fluor...
Time-correlated single photon counting (TCSPC) is commonly used to measure the lifetime of fluoresce...
A new hardware-friendly bi-exponential fluorescence lifetime imaging (FLIM) algorithm has been propo...
Measuring fluorescence lifetimes of fast-moving cells or particles have broad applications in biomed...
We present a CMOS chip 256 × 2 single photon avalanche diode (SPAD) line sensor, 23.78 µm pitch, 43....
The capability to resolve the contributions from spectroscopically overlapping fluorophores has enab...
We report a fluorescence lifetime imaging technique that uses the time integrated response to a peri...
Lifetime imaging microscopy with sub-micron resolution provides essential understanding of living sy...
Localizing photon arrivals with high spatial (megapixel) and temporal (sub-nanosecond) resolution wo...
A 512 × 16 single photon avalanche diode (SPAD)-based line sensor is designed in a 0.13- μm CMOS ima...