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Comparison of single distance phase retrieval algorithms by considering different object composition and the effect of statistical and structural noise

R. C. Chen
•
RIGON, LUIGI
•
LONGO, RENATA
2013
  • journal article

Periodico
OPTICS EXPRESS
Abstract
Phase retrieval is a technique for extracting quantitative phase information from X-ray propagation-based phase-contrast tomography (PPCT). In this paper, the performance of different single distance phase retrieval algorithms will be investigated. The algorithms are herein called phase-attenuation duality Born Algorithm (PAD-BA), phase-attenuation duality Rytov Algorithm (PAD-RA), phase-attenuation duality Modified Bronnikov Algorithm (PAD-MBA), phase-attenuation duality Paganin algorithm (PAD-PA) and phase-attenuation duality Wu Algorithm (PAD-WA), respectively. They are all based on phase-attenuation duality property and on weak absorption of the sample and they employ only a single distance PPCT data. In this paper, they are investigated via simulated noise-free PPCT data considering the fulfillment of PAD property and weakly absorbing conditions, and with experimental PPCT data of a mixture sample containing absorbing and weakly absorbing materials, and of a polymer sample considering different degrees of statistical and structural noise. The simulation shows all algorithms can quantitatively reconstruct the 3D refractive index of a quasi-homogeneous weakly absorbing object from noise-free PPCT data. When the weakly absorbing condition is violated, the PAD-RA and PAD-PA/WA obtain better result than PAD-BA and PAD-MBA that are shown in both simulation and mixture sample results. When considering the statistical noise, the contrast-to-noise ratio values decreases as the photon number is reduced. The structural noise study shows that the result is progressively corrupted by ring-like artifacts with the increase of structural noise (i.e. phantom thickness). The PAD-RA and PAD-PA/WA gain better density resolution than the PAD-BA and PAD-MBA in both statistical and structural noise study.
DOI
10.1364/OE.21.007384
WOS
WOS:000316796000077
Archivio
http://hdl.handle.net/11368/2665113
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-84875755228
Diritti
metadata only access
Soggetti
  • SYNCHROTRON-RADIATION...

  • COMPUTED-TOMOGRAPHY

  • ATTENUATION DUALITY

  • X-ray computed microt...

Scopus© citazioni
42
Data di acquisizione
Jun 7, 2022
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Web of Science© citazioni
45
Data di acquisizione
Mar 20, 2024
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Data di acquisizione
Apr 19, 2024
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