Please use this identifier to cite or link to this item: https://hdl.handle.net/1959.11/18114
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dc.contributor.authorNesterets, Yakoven
dc.contributor.authorGureyev, Timuren
dc.contributor.authorTromba, Giulianaen
dc.contributor.authorMayo, Sheridan Cen
dc.contributor.authorStevenson, Andrew Wen
dc.contributor.authorThompson, Darrenen
dc.contributor.authorBrown, Jeremy M Cen
dc.contributor.authorKitchen, Marcus Jen
dc.contributor.authorPavlov, Konstantin Men
dc.contributor.authorLockie, Darrenen
dc.contributor.authorBrun, Francescoen
dc.date.accessioned2015-11-06T15:23:00Z-
dc.date.issued2015-
dc.identifier.citationJournal of Synchrotron Radiation, 22(6), p. 1509-1523en
dc.identifier.issn1600-5775en
dc.identifier.issn0909-0495en
dc.identifier.urihttps://hdl.handle.net/1959.11/18114-
dc.description.abstractResults are presented of a recent experiment at the Imaging and Medical beamline of the Australian Synchrotron intended to contribute to the implementation of low-dose high-sensitivity three-dimensional mammographic phase-contrast imaging, initially at synchrotrons and subsequently in hospitals and medical imaging clinics. The effect of such imaging parameters as X-ray energy, source size, detector resolution, sample-to-detector distance, scanning and data processing strategies in the case of propagation-based phase-contrast computed tomography (CT) have been tested, quantified, evaluated and optimized using a plastic phantom simulating relevant breast-tissue characteristics. Analysis of the data collected using a Hamamatsu CMOS Flat Panel Sensor, with a pixel size of 100 mm, revealed the presence of propagation-based phase contrast and demonstrated significant improvement of the quality of phase-contrast CT imaging compared with conventional (absorption-based) CT, at medically acceptable radiation doses.en
dc.languageenen
dc.publisherWiley-Blackwell Publishing Ltden
dc.relation.ispartofJournal of Synchrotron Radiationen
dc.titleA feasibility study of X-ray phase-contrast mammographic tomography at the Imaging and Medical beamline of the Australian Synchrotronen
dc.typeJournal Articleen
dc.identifier.doi10.1107/s160057751501766xen
dc.subject.keywordsSynchrotrons; Accelerators; Instruments and Techniquesen
dc.subject.keywordsOptical Physicsen
dc.subject.keywordsMedical Physicsen
local.contributor.firstnameYakoven
local.contributor.firstnameTimuren
local.contributor.firstnameGiulianaen
local.contributor.firstnameSheridan Cen
local.contributor.firstnameAndrew Wen
local.contributor.firstnameDarrenen
local.contributor.firstnameJeremy M Cen
local.contributor.firstnameMarcus Jen
local.contributor.firstnameKonstantin Men
local.contributor.firstnameDarrenen
local.contributor.firstnameFrancescoen
local.subject.for2008029903 Medical Physicsen
local.subject.for2008029904 Synchrotrons; Accelerators; Instruments and Techniquesen
local.subject.for2008020599 Optical Physics not elsewhere classifieden
local.subject.seo2008861502 Medical Instrumentsen
local.subject.seo2008920102 Cancer and Related Disordersen
local.subject.seo2008861503 Scientific Instrumentsen
local.profile.schoolSchool of Science and Technologyen
local.profile.schoolSchool of Science and Technologyen
local.profile.schoolSchool of Science and Technologyen
local.profile.emailynestere@une.edu.auen
local.profile.emailtgureyev@une.edu.auen
local.profile.emaildthomp43@myune.edu.auen
local.profile.emailkpavlov@une.edu.auen
local.output.categoryC1en
local.record.placeauen
local.record.institutionUniversity of New Englanden
local.identifier.epublicationsrecordune-20151106-114426en
local.publisher.placeUnited Kingdomen
local.format.startpage1509en
local.format.endpage1523en
local.identifier.scopusid84946761066en
local.peerreviewedYesen
local.identifier.volume22en
local.identifier.issue6en
local.contributor.lastnameNesteretsen
local.contributor.lastnameGureyeven
local.contributor.lastnameTrombaen
local.contributor.lastnameMayoen
local.contributor.lastnameStevensonen
local.contributor.lastnameThompsonen
local.contributor.lastnameBrownen
local.contributor.lastnameKitchenen
local.contributor.lastnamePavloven
local.contributor.lastnameLockieen
local.contributor.lastnameBrunen
dc.identifier.staffune-id:ynestereen
dc.identifier.staffune-id:tgureyeven
dc.identifier.staffune-id:dthomp43en
dc.identifier.staffune-id:jbrown72en
dc.identifier.staffune-id:kpavloven
local.profile.orcid0000-0002-1103-0649en
local.profile.orcid0000-0002-1756-4406en
local.profile.roleauthoren
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local.profile.roleauthoren
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local.profile.roleauthoren
local.identifier.unepublicationidune:18320en
dc.identifier.academiclevelAcademicen
dc.identifier.academiclevelAcademicen
dc.identifier.academiclevelAcademicen
dc.identifier.academiclevelAcademicen
local.title.maintitleA feasibility study of X-ray phase-contrast mammographic tomography at the Imaging and Medical beamline of the Australian Synchrotronen
local.output.categorydescriptionC1 Refereed Article in a Scholarly Journalen
local.relation.grantdescriptionARC/SR120200004en
local.search.authorNesterets, Yakoven
local.search.authorGureyev, Timuren
local.search.authorTromba, Giulianaen
local.search.authorMayo, Sheridan Cen
local.search.authorStevenson, Andrew Wen
local.search.authorThompson, Darrenen
local.search.authorBrown, Jeremy M Cen
local.search.authorKitchen, Marcus Jen
local.search.authorPavlov, Konstantin Men
local.search.authorLockie, Darrenen
local.search.authorBrun, Francescoen
local.uneassociationUnknownen
local.year.published2015en
local.subject.for2020510502 Medical physicsen
local.subject.for2020511001 Acceleratorsen
local.subject.for2020510299 Atomic, molecular and optical physics not elsewhere classifieden
local.subject.seo2020241002 Medical instrumentsen
local.subject.seo2020241003 Scientific instrumentsen
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