Compact off-axis holographic slide microscope: design guidelines

Holographic microscopes are emerging as suitable tools for in situ diagnostics and environmental monitoring, providing high-throughput, label-free, quantitative imaging capabilities through small and compact devices. In-line holographic microscopes can be realized at contained costs, trading off com...

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Veröffentlicht in:Biomedical optics express 2020-05, Vol.11 (5), p.2511-2532
Hauptverfasser: Cacace, Teresa, Bianco, Vittorio, Mandracchia, Biagio, Pagliarulo, Vito, Oleandro, Emilia, Paturzo, Melania, Ferraro, Pietro
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Sprache:eng
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Zusammenfassung:Holographic microscopes are emerging as suitable tools for in situ diagnostics and environmental monitoring, providing high-throughput, label-free, quantitative imaging capabilities through small and compact devices. In-line holographic microscopes can be realized at contained costs, trading off complexity in the phase retrieval process and being limited to sparse samples. Here we present a 3D printed, cost effective and field portable off-axis holographic microscope based on the concept of holographic microfluidic slide. Our scheme removes complexity from the reconstruction process, as phase retrieval is non iterative and obtainable by hologram demodulation. The configuration we introduce ensures flexibility in the definition of the optical scheme, exploitable to realize modular devices with different features. We discuss trade-offs and design rules of thumb to follow for developing DH microscopes based on the proposed solution. Using our prototype, we image flowing marine microalgae, polystyrene beads, E.coli bacteria and microplastics. We detail the effect on the performance and costs of each parameter, design, and hardware choice, guiding readers toward the realization of optimized devices that can be employed out of the lab by non-expert users for point of care testing. (C) 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
ISSN:2156-7085
2156-7085
DOI:10.1364/BOE.11.002511