Simulation and experimental verification for imaging of gray-scale objects through scattering layers

We analyze the imaging of gray-scale objects through highly scattering layers. The theoretical investigation with numerical simulations shows that the contrast of the speckle autocorrelations varies regularly with the change of the gray scale of the object. Therefore, gray information is well contai...

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Veröffentlicht in:Applied optics. Optical technology and biomedical optics Jg. 55; H. 34; S. 9731
Hauptverfasser: Li, Huijuan, Wu, Tengfei, Liu, Jietao, Gong, Changmei, Shao, Xiaopeng
Format: Journal Article
Sprache:Englisch
Veröffentlicht: United States 01.12.2016
ISSN:1539-4522, 2155-3165, 1539-4522
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Zusammenfassung:We analyze the imaging of gray-scale objects through highly scattering layers. The theoretical investigation with numerical simulations shows that the contrast of the speckle autocorrelations varies regularly with the change of the gray scale of the object. Therefore, gray information is well contained in the autocorrelations of the speckle patterns, and gray-scale objects are able to be exacted from these autocorrelations via speckle correlation technology. Combined with phase retrieval via the generalized approximate message passing algorithm, recovery of the objects is realized and accurate gray-scale reconstruction is demonstrated via numerical simulations. Experiment results further demonstrate the good performance of the scheme in the imaging of gray-scale objects through scattering layers. Particularly, this work will be beneficial for applications of imaging through turbid media in biomedical and biophotonics imaging.
Bibliographie:ObjectType-Article-1
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content type line 23
ISSN:1539-4522
2155-3165
1539-4522
DOI:10.1364/AO.55.009731