Search results for "Skin autofluorescence"

showing 8 items of 8 documents

Parallel Measurements of in-vivo Skin Autofluorescence Lifetimes and Photobleaching Rates

2015

Experimental methodology for parallel measurements of in-vivo skin autofluorescence (AF) lifetimes and photo-bleaching dynamic has been developed and tested. The AF lifetime decay distributions were periodically collected from fixed tissue area with subsequent detection of the fluorescence intensity decrease dynamic at different time shifts after the pulse excitation. Temporal distributions of skin AF lifetimes and bleaching dynamic were collected and analyzed by means of commercial time-correlated single photon counting system. Details of the equipment and data processing are described as well as some measurement results that confirm the feasibility of the proposed technology.

AutofluorescenceFluorescence intensityMaterials scienceOpticsPulse (signal processing)In vivobusiness.industrySkin autofluorescencebusinessPhotobleachingPhoton countingExcitation
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Photobleaching measurements of pigmented and vascular skin lesions: results of a clinical trial

2011

The autofluorescence photobleaching intensity dynamics of in vivo skin and skin pathologies under continuous 532 nm laser irradiation have been studied. Overall the 141 human skin malformations were investigated by laser induced skin autofluorescence photobleaching analysis. Details of equipment are described along with some measurement results illustrating potentiality of the technology.

AutofluorescencePathologymedicine.medical_specialtyintegumentary systemIn vivobusiness.industryMedicineHuman skinSkin autofluorescencePigmented skinbusinessSkin lesionPhotobleachingSPIE Proceedings
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Lasers for in-vivo skin diagnostics: some recent developments

2019

The recent advancements of three laser-based diagnostic technologies developed at the Riga group are briefly reviewed: (i) RGB imaging of cw-laser excited skin autofluorescence intensity and photobleaching rate distributions, (ii) ps-laser excited skin autofluorescence and diffuse reflectance kinetics analysis, (iii) snapshot RGB skin chromophore mapping under triple-laser illumination. These techniques have passed preliminary laboratory and clinical tests which have demonstrated a promising potential for further implementation in portable devices for routine clinical applications. Operation principles, set-up schemes and some clinical results obtained by the above-mentioned techniques are …

Clinical testsAutofluorescenceOpticsMaterials sciencelawbusiness.industrySkin autofluorescenceLaserbusinessPhotobleachinglaw.invention20th International Conference and School on Quantum Electronics: Laser Physics and Applications
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Autofluorescence imaging of basal cell carcinoma by smartphone RGB camera

2015

The feasibility of smartphones for in vivo skin autofluorescence imaging has been investigated. Filtered autofluorescence images from the same tissue area were periodically captured by a smartphone RGB camera with subsequent detection of fluorescence intensity decreasing at each image pixel for further imaging the planar distribution of those values. The proposed methodology was tested clinically with 13 basal cell carcinoma and 1 atypical nevus. Several clinical cases and potential future applications of the smartphone-based technique are discussed.

PorphyrinsSkin NeoplasmsLightComputer scienceBiomedical EngineeringDermoscopyImage processingFluorescenceBiomaterialsOpticsmedicineHumansBasal cell carcinomaNevusSkinPhotobleachingPixelbusiness.industrySkin autofluorescenceNADmedicine.diseaseAtypical nevusAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsAutofluorescenceFluorescence intensityMicroscopy FluorescenceCarcinoma Basal CellRGB color modelCollagenSmartphonebusinessBiomedical engineeringJournal of Biomedical Optics
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Multispectral, Fluorescent and Photoplethysmographic Imaging for Remote Skin Assessment

2017

Optical tissue imaging has several advantages over the routine clinical imaging methods, including non-invasiveness (does not change the structure of tissues), remote operation (avoids infection) and ability to quantify the tissue condition by means of specific image parameters. Dermatologists and other skin experts need compact (preferably pocket-size), self-sustained and easy-to-use imaging devices. The operational principles and designs of ten portable in-vivo skin imaging prototypes developed at the Biophotonics Laboratory of Institute of Atomic Physics and Spectroscopy, University of Latvia during the recent five years are presented in this paper. Four groups of imaging devices are con…

Remote detectionTissue imagingComputer scienceMultispectral imageReview02 engineering and technology01 natural sciencesBiochemistryphotoplethysmography imagingAnalytical Chemistry010309 opticsRemote operationskin autofluorescence and photobleachingPhotoplethysmogram0103 physical sciencesHumansComputer visionElectrical and Electronic EngineeringImage sensorPhotoplethysmographyInstrumentationSkinbusiness.industrySpectrum Analysismultispectral skin imaging021001 nanoscience & nanotechnologyPhotobleachingFluorescenceAtomic and Molecular Physics and OpticsopticsBiophotonicsAutofluorescenceArtificial intelligence0210 nano-technologybusinessBiomedical engineering
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A method for skin malformation classification by combining multispectral and skin autofluorescence imaging

2018

As the incidence of skin cancer is still increasing worldwide, there is a high demand for early, non-invasive and inexpensive skin lesion diagnostics. In this article we describe and combine two skin imaging methods: skin autofluorescence (AF) and multispectral criterion p’. To develop this method, we used custom made prototype with 405 nm, 526 nm, 663 nm and 964 nm LED illuminations, perpendicular positioned linear polarizers, 515 nm filter and IDS camera. Our aim is to develop a skin lesion diagnostic device for primary care physicians who do not have experience in dermatology or skin oncology. In this study we included such common benign lesion groups as seborrheic keratosis, hyperkerato…

Seborrheic keratosismedicine.medical_specialtyintegumentary systembusiness.industryMelanomaHyperkeratosisPrimary careBenign lesionSkin autofluorescencemedicine.diseaseDermatologymedicineBasal cell carcinomaSkin cancerbusinessBiophotonics: Photonic Solutions for Better Health Care VI
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RGB imaging of laser-excited skin autofluorescence bleaching rates

2010

In-vivo skin photo-bleaching (intensity decrease during irradiation) has been investigated at 405 nm cw laser excitation. Digital RGB photo-camera was used for studies of the bleaching features by analysis of fluorescent images at separated R, G and B spectral bands. Diagnostic potential based on correlations between skin pigmentation and bleaching rates is discussed.

genetic structuresbusiness.industryChemistrySkin autofluorescenceSpectral bandsCw laserLaserFluorescencelaw.inventionOpticslawExcited stateRGB color modelsense organsIrradiationbusinessSPIE Proceedings
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Skin autofluorescence photo-bleaching and photo-memory

2011

Photo-bleaching of in-vivo skin autofluorescence intensity under continuous low power laser irradiation has been studied. Temporal behavior of single-spot fluorescence and spectral fluorescent images have been studied at continuous 405 nm, 473 nm and 532 nm laser excitation and/or pre-irradiation, with power densities well below the laser-skin safety limits. Skin autofluorescence photo-memory effects (laser signatures) have been observed and analyzed, as well.

medicine.medical_specialtyMaterials scienceintegumentary systembusiness.industrySkin autofluorescenceLaserPhotobleachingFluorescenceSpectral imaginglaw.inventionAutofluorescenceOpticslawmedicineOptoelectronicsbusinessLuminescenceExcitation
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