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dc.contributor.authorTseng, YP
dc.contributor.authorBouzy, P
dc.contributor.authorPedersen, C
dc.contributor.authorStone, N
dc.contributor.authorTidemand-Lichtenberg, P
dc.date.accessioned2019-03-04T14:49:00Z
dc.date.issued2018-09-24
dc.description.abstractLong-wavelength identification of microcalcifications in breast cancer tissue is demonstrated using a novel upconversion raster scanning microscope. The system consists of quantum cascade lasers (QCL) for illumination and an upconversion system for efficient, high-speed detection using a silicon detector. Absorbance spectra and images of regions of ductal carcinoma in situ (DCIS) from the breast have been acquired using both upconversion and Fourier-transform infrared (FTIR) systems. The spectral images are compared and good agreement is found between the upconversion and the FTIR systems.en_GB
dc.description.sponsorshipEuropean Unionen_GB
dc.identifier.citationVol. 9 (10), pp. 4979 - 4987en_GB
dc.identifier.doi10.1364/BOE.9.004979
dc.identifier.grantnumber642661en_GB
dc.identifier.urihttp://hdl.handle.net/10871/36247
dc.language.isoenen_GB
dc.publisherOptical Society of Americaen_GB
dc.rights© 2018 Optical Society of America under the terms of the OSA Open Access Publishing Agreement.en_GB
dc.titleUpconversion raster scanning microscope for long-wavelength infrared imaging of breast cancer microcalcificationsen_GB
dc.typeArticleen_GB
dc.date.available2019-03-04T14:49:00Z
dc.descriptionThis is the final version. Available from Optical Society of America via the DOI in this record. en_GB
dc.identifier.eissn2156-7085
dc.identifier.journalBiomedical Optics Expressen_GB
dc.rights.urihttp://www.rioxx.net/licenses/all-rights-reserveden_GB
dcterms.dateAccepted2018-09-11
rioxxterms.versionVoRen_GB
rioxxterms.licenseref.startdate2018-09-11
rioxxterms.typeJournal Article/Reviewen_GB
refterms.dateFCD2019-03-04T14:45:07Z
refterms.versionFCDVoR
refterms.dateFOA2019-03-04T14:49:04Z
refterms.panelBen_GB


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