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Optimization of Fourier Ptychographic microscope using phase images for malaria detection

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Résumé

Fourier ptychographic microscopy is a recent imaging technique that overcomes the limitations of conventional optics. The images it produces are particularly fine a nd s uper-resolved. T hey a re a lso v ery r ich, s ince they are bimodal (intensity and phase images) compared with conventional microscopy. FPM therefore holds great promise for a whole range of medical applications. In this work, the potential of this microscopy is explored by considering the biological application of automatic diagnosis of malaria on a stained blood smear. We report that an appreciable improvement in the classification of parasitized red blood cells is obtained when intensity and phase images are jointly exploited in a deep convolutionnal neural network, compared to that obtained with intensity images alone. We also show that such joint exploitation considerably relaxes the constraints relative to the choice of microscope objective. In particular, an objective lens with a numerical aperture as low as 0.2 can be used with little degradation in classification p erformance. The performances obtained are close to those obtained with a conventional resolution microscope equiped with a 0.9 numerical aperture objective. This can be highly desirable for the realization of rapid diagnostic system, which requires access to large fields of view.

langue originaleAnglais
titreUnconventional Optical Imaging IV
rédacteurs en chefIrene Georgakoudi, Marc P. Georges, Nicolas Verrier
EditeurSPIE
ISBN (Electronique)9781510673106
Les DOIs
étatPublié - 1 janv. 2024
EvénementUnconventional Optical Imaging IV 2024 - Strasbourg, France
Durée: 8 avr. 202411 avr. 2024

Série de publications

NomProceedings of SPIE - The International Society for Optical Engineering
Volume12996
ISSN (imprimé)0277-786X
ISSN (Electronique)1996-756X

Une conférence

Une conférenceUnconventional Optical Imaging IV 2024
Pays/TerritoireFrance
La villeStrasbourg
période8/04/2411/04/24

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