A new hardware-friendly bi-exponential fluorescence lifetime imaging (FLIM) algorithm has been proposed. Compared to conventional FLIM software, the proposed algorithms are non-iterative offering direct calculation of lifetimes and therefore suitable for real-time applications. They can be applicable to single-channel or 2D multi-channel time-correlated single-photon counting (TCSPC) systems. The proposed methods have been tested on both synthesized and realistic FLIM data, and we have compared their performances with other recently proposed non-fitting bi-exponential techniques showing promising applications in future massive solid-state TCSPC imagers
A new, simple, high-speed, and hardware-only integrationbased fluorescence-lifetime-sensing algorith...
The use of fluorescence lifetime imaging microscopy (FLIM) is appealing for the study of biomolecula...
A new, simple, high-speed, and hardware-only integrationbased fluorescence-lifetime-sensing algorith...
A new hardware-friendly bi-exponential fluorescence lifetime imaging (FLIM) algorithm has been propo...
A new hardware-friendly bi-exponential fluorescence lifetime imaging (FLIM) algorithm has been propo...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
Fluorescence lifetime imaging microscopy (FLIM) plays a significant role in biological sciences, che...
Fluorescence lifetime imaging microscopy (FLIM) plays a significant role in biological sciences, che...
Fluorescence microscopy is a powerful imaging technique used in the biological sciences to identify ...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
Fluorescence lifetime imaging microscopy (FLIM) is a key technology that provides direct insight int...
We present a fast and accurate analytical method for fluorescence lifetime imaging microscopy (FLIM)...
A new, simple, high-speed, and hardware-only integrationbased fluorescence-lifetime-sensing algorith...
A new, simple, high-speed, and hardware-only integrationbased fluorescence-lifetime-sensing algorith...
The use of fluorescence lifetime imaging microscopy (FLIM) is appealing for the study of biomolecula...
A new, simple, high-speed, and hardware-only integrationbased fluorescence-lifetime-sensing algorith...
A new hardware-friendly bi-exponential fluorescence lifetime imaging (FLIM) algorithm has been propo...
A new hardware-friendly bi-exponential fluorescence lifetime imaging (FLIM) algorithm has been propo...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
Fluorescence lifetime imaging microscopy (FLIM) plays a significant role in biological sciences, che...
Fluorescence lifetime imaging microscopy (FLIM) plays a significant role in biological sciences, che...
Fluorescence microscopy is a powerful imaging technique used in the biological sciences to identify ...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
Fluorescence lifetime imaging microscopy (FLIM) is a key technology that provides direct insight int...
We present a fast and accurate analytical method for fluorescence lifetime imaging microscopy (FLIM)...
A new, simple, high-speed, and hardware-only integrationbased fluorescence-lifetime-sensing algorith...
A new, simple, high-speed, and hardware-only integrationbased fluorescence-lifetime-sensing algorith...
The use of fluorescence lifetime imaging microscopy (FLIM) is appealing for the study of biomolecula...
A new, simple, high-speed, and hardware-only integrationbased fluorescence-lifetime-sensing algorith...