Petra Paiè,1,2 Andrea Comi,1 Alessia Candeo,2 Gianmaria Calisesi,2 Federico Sala,1,2 Francesco Ceccarellihttps://orcid.org/0000-0001-9574-2899,1 Korbinian Muhlberger,3 Michael Fokine,3 Mark Neil,4 Gianluca Valentini,2 Roberto Osellame,1 Andrea Bassi,2 Francesca Bragheri1
1CNR-Istituto di Fotonica e Nanotecnologie (Italy) 2Politecnico di Milano (Italy) 3KTH Royal Institute of Technology (Sweden) 4Imperial College London (United Kingdom)
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Heterogeneity plays an important role in medicine and biology, which can be investigated by exploiting single cell analysis (SCA). Among SCA methods, imaging cytometry allows the analysis of individual 2D and 3D spatial features. Here we present a femtosecond laser fabricated optofluidic automated platform encompassing a thermo-optic phase shifter, cylindrical lenses and a microfluidic network to generate and shift a dual-color patterned light sheet within a microchannel where the samples of interest flow. The device can be used as add-on and can provide an acquisition rate of about 1 cell/second, or subnuclear resolution at the single cell level.
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Petra Paiè, Andrea Comi, Alessia Candeo, Gianmaria Calisesi, Federico Sala, Francesco Ceccarelli, Korbinian Muhlberger, Michael Fokine, Mark Neil, Gianluca Valentini, Roberto Osellame, Andrea Bassi, Francesca Bragheri, "Automated platform for dual-color 3D imaging of single cells at high resolution and throughput (Conference Presentation)," Proc. SPIE PC12390, High-Speed Biomedical Imaging and Spectroscopy VIII, PC123900O (16 March 2023); https://doi.org/10.1117/12.2650263