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The BrightEyes-TTM: an Open-Source Time-Tagging Module for Single-Photon Microscopy

Authors :
Giuseppe Vicidomini
Alessandro Rossetta
Marco Crepaldi
Francesco Diotalevi
Giorgio Tortarolo
Mattia Donato
Eli Slenders
Luca Lanzano
Eleonora Perego
Sami Koho
Source :
bioRxiv
Publication Year :
2023
Publisher :
Zenodo, 2023.

Abstract

Fluorescence laser-scanning microscopy (LSM) is experiencing a revolution thanks to the introduction of new asynchronous read-out single-photon (SP) array detectors. These detectors give access to an entirely new set of single-photon information typically lost in conventional fluorescence LSM, thus triggering a new imaging/spectroscopy paradigm – the so-called singlephoton LSM (SP-LSM). The revolution’s outcomes are, from one side, the blooming of new SP-LSM techniques and tailored SP array detectors; from the other side, the need for data acquisition (DAQ) systems effectively supporting such innovations. In particular, there is a growing need for DAQ systems capable of handling the high throughput and high temporal resolution information generated by the single-photon detectors. To fill this gap, we developed an open-source multi-channel time tagging module (TTM) based on a field-programmable-gate array (FPGA), that can temporally tag single-photon events – with 30 ps precision – and synchronisation events – with 4 ns precision. Furthermore, being an open-access project, the TTM can be upgraded, modified, and customized by the microscopy-makers. We connected the TTM to a fluorescence LSM equipped with a single-photon avalanche diode (SPAD) bidimensional array detector, and we implemented fluorescence lifetime image scanning microscopy (FLISM) and, for the first time, fluorescence lifetime fluctuation spectroscopy (FLFS). We expect that our BrigthEyes-TTM will support the microscopy community to spread SP-LSM in many life science labs.

Details

Language :
English
Database :
OpenAIRE
Journal :
bioRxiv
Accession number :
edsair.doi.dedup.....469204f2eed7471c0ab12888ad3d1740
Full Text :
https://doi.org/10.5281/zenodo.7920628