Digital Holography (DH) numerical procedures have been developed to allow imaging through turbid media. A fluid is considered turbid when dispersed particles provoke strong light scattering, thus destroying the image formation by any standard optical system. Here we show that sharp amplitude imaging and phase-contrast mapping of object hidden behind turbid medium and/or occluding objects are possible in harsh noise conditions and with a large field-of view by Multi-Look DH microscopy. In particular, it will be shown that both amplitude imaging and phase-contrast mapping of cells hidden behind a flow of Red Blood Cells can be obtained. This allows, in a noninvasive way, the quantitative evaluation of living processes in Lab on Chip platforms where conventional microscopy techniques fail. The combination of this technique with endoscopic imaging can pave the way for the holographic blood vessel inspection, e.g. to look for settled cholesterol plaques as well as blood clots for a rapid diagnostics of blood diseases.

Holographic quantitative imaging of sample hidden by turbid medium or occluding objects / Bianco, V.; Miccio, L.; Merola, F.; Memmolo, P.; Gennari, O.; Paturzo, Melania; Netti, PAOLO ANTONIO; Ferraro, P.. - In: PROGRESS IN BIOMEDICAL OPTICS AND IMAGING. - ISSN 1605-7422. - 9336:(2015), p. 933612. (Intervento presentato al convegno 1st Conference on Quantitative Phase Imaging, QPI 2015 tenutosi a San Francisco, CA (USA) nel 2015) [10.1117/12.2086808].

Holographic quantitative imaging of sample hidden by turbid medium or occluding objects

NETTI, PAOLO ANTONIO;
2015

Abstract

Digital Holography (DH) numerical procedures have been developed to allow imaging through turbid media. A fluid is considered turbid when dispersed particles provoke strong light scattering, thus destroying the image formation by any standard optical system. Here we show that sharp amplitude imaging and phase-contrast mapping of object hidden behind turbid medium and/or occluding objects are possible in harsh noise conditions and with a large field-of view by Multi-Look DH microscopy. In particular, it will be shown that both amplitude imaging and phase-contrast mapping of cells hidden behind a flow of Red Blood Cells can be obtained. This allows, in a noninvasive way, the quantitative evaluation of living processes in Lab on Chip platforms where conventional microscopy techniques fail. The combination of this technique with endoscopic imaging can pave the way for the holographic blood vessel inspection, e.g. to look for settled cholesterol plaques as well as blood clots for a rapid diagnostics of blood diseases.
2015
9781628414264
9781628414264
Holographic quantitative imaging of sample hidden by turbid medium or occluding objects / Bianco, V.; Miccio, L.; Merola, F.; Memmolo, P.; Gennari, O.; Paturzo, Melania; Netti, PAOLO ANTONIO; Ferraro, P.. - In: PROGRESS IN BIOMEDICAL OPTICS AND IMAGING. - ISSN 1605-7422. - 9336:(2015), p. 933612. (Intervento presentato al convegno 1st Conference on Quantitative Phase Imaging, QPI 2015 tenutosi a San Francisco, CA (USA) nel 2015) [10.1117/12.2086808].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/642813
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