In nonlinear optical microscopy through skin, the laser energy is attenuated, and the spot size increases. Holographic corrections work only on small isoplanatic patches. We test Physically-Inspired-Neural-Networks for scattering correction, enhancing speed and overcoming non-isoplanatism.

Marini, M., Panzeri, D., Presotto, L., Sironi, L., Collini, M., Chirico, G. (2024). Physically Inspired Scattering Correction for Non-Linear Excitation Imaging of Tissues. In 2024 IEEE 8th Forum on Research and Technologies for Society and Industry Innovation (RTSI) (pp.317-321). IEEE [10.1109/RTSI61910.2024.10761171].

Physically Inspired Scattering Correction for Non-Linear Excitation Imaging of Tissues

Marini M.;Presotto L.;Sironi L.;Collini M.;Chirico G.
2024

Abstract

In nonlinear optical microscopy through skin, the laser energy is attenuated, and the spot size increases. Holographic corrections work only on small isoplanatic patches. We test Physically-Inspired-Neural-Networks for scattering correction, enhancing speed and overcoming non-isoplanatism.
paper
holography; nonlinear excitation imaging; scattering;
English
8th IEEE International Forum on Research and Technologies for Society and Industry Innovation, RTSI 2024 - 18-20 September 2024
2024
2024 IEEE 8th Forum on Research and Technologies for Society and Industry Innovation (RTSI)
9798350362138
2024
317
321
none
Marini, M., Panzeri, D., Presotto, L., Sironi, L., Collini, M., Chirico, G. (2024). Physically Inspired Scattering Correction for Non-Linear Excitation Imaging of Tissues. In 2024 IEEE 8th Forum on Research and Technologies for Society and Industry Innovation (RTSI) (pp.317-321). IEEE [10.1109/RTSI61910.2024.10761171].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/577702
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