Search results for "Optical"

showing 10 items of 7671 documents

Noninvasive optical diagnostics of enhanced green fluorescent protein expression in skeletal muscle for comparison of electroporation and sonoporatio…

2015

We highlight the options available for noninvasive optical diagnostics of reporter gene expression in mouse tibialis cranialis muscle. An in vivo multispectral imaging technique combined with fluorescence spectroscopy point measurements has been used for the transcutaneous detection of enhanced green fluorescent protein (EGFP) expression, providing information on location and duration of EGFP expression and allowing quantification of EGFP expression levels. For EGFP coding plasmid (pEGFP-Nuc Vector, 10  μg/50  ml 10  μg/50  ml ) transfection, we used electroporation or ultrasound enhanced microbubble cavitation [sonoporation (SP)]. The transcutaneous EGFP fluorescence in live mice was monit…

0301 basic medicineMaleGreen Fluorescent ProteinsBiomedical EngineeringNanotechnologyTransfectionFluorescence spectroscopyGreen fluorescent proteinBiomaterials03 medical and health sciencesMiceSonicationAnimalsMuscle SkeletalReporter geneChemistryHistocytochemistryElectroporationfungiOptical ImagingTransfectionEquipment DesignFluorescenceAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsMice Inbred C57BL030104 developmental biologyElectroporationBiophysicsFemaleSonoporationPreclinical imagingJournal of biomedical optics
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Objective Assessment of Nuclear and Cortical Cataracts through Scheimpflug Images: Agreement with the LOCS III Scale.

2016

Purpose To assess nuclear and cortical opacities through the objective analysis of Scheimpflug images, and to check the correlation with the Lens Opacity Classification System III (LOCS III). Methods Nuclear and cortical opacities were graded according to the LOCS III rules after pupil dilation. The maximum and average pixel intensity values along an elliptical mask within the lens nucleus were taken to analyse nuclear cataracts. A new metric based on the percentage of opaque pixels within a region of interest was used to analyse cortical cataracts. The percentage of opaque pixels was also calculated for half, third and quarter areas from the region of interest’s periphery. Results The maxi…

0301 basic medicineMaleScheimpflug principlelcsh:MedicineDiagnostic Techniques OphthalmologicalSeverity of Illness IndexMachine Learning0302 clinical medicineMedicine and Health Scienceslcsh:ScienceOptical PropertiesLens (Anatomy)PhysicsAged 80 and overMultidisciplinaryApplied MathematicsSimulation and ModelingOphthalmic ProceduresCataract SurgeryMiddle AgedOptical LensesOptical EquipmentPhysical SciencesEngineering and TechnologyFemaleAnatomyAlgorithmsResearch ArticleOpacityAdultDiagnostic Imagingmedicine.medical_specialtyComputer and Information SciencesScale (ratio)OpacityImaging TechniquesOcular AnatomyMaterials ScienceMaterial PropertiesEquipmentSurgical and Invasive Medical ProceduresImage AnalysisResearch and Analysis MethodsLens nucleusCataract03 medical and health sciencesMachine Learning AlgorithmsYoung AdultCataractsRegion of interestOcular SystemArtificial IntelligenceOphthalmologymedicineHumansAgedPixelCataractslcsh:RBiology and Life SciencesCorrectionLens Nucleus CrystallineLens Cortex Crystallinemedicine.diseaseIntensity (physics)Ophthalmology030104 developmental biologyLens DisordersCase-Control Studies030221 ophthalmology & optometryEyesCognitive Sciencelcsh:QHeadMathematicsNeurosciencePloS one
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Effect of counting chamber depth on the accuracy of lensless microscopy for the assessment of boar sperm motility.

2017

Sperm motility is one of the most significant parameters in the prediction of male fertility. Until now, both motility analysis using an optical microscope and computer-aided sperm analysis (CASA-Mot) entailed the use of counting chambers with a depth to 20 µm. Chamber depth significantly affects the intrinsic sperm movement, leading to an artificial motility pattern. For the first time, laser microscopy offers the possibility of avoiding this interference with sperm movement. The aims of the present study were to determine the different motility patterns observed in chambers with depths of 10, 20 and 100 µm using a new holographic approach and to compare the results obtained in the 20-µm c…

0301 basic medicineMaleSwineMotilityBeat (acoustics)Reproductive technologyKinematicsBiologylaw.invention03 medical and health sciences0302 clinical medicineEndocrinologyOptical microscopelawMicroscopyGeneticsImage Processing Computer-AssistedAnimalsMolecular BiologySperm motilityMicroscopy030219 obstetrics & reproductive medicineSperm CountSpermSpermatozoaSemen Analysis030104 developmental biologyReproductive MedicineSperm MotilityAnimal Science and ZoologyDevelopmental BiologyBiotechnologyBiomedical engineeringReproduction, fertility, and development
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FRET-based method for evaluation of the efficiency of reversible and irreversible sonoporation.

2017

It is widely known that not all of the treated cells survive after introduction of exogenous molecules via any physical method. Therefore, it is important to develop methods that would allow simultaneous evaluation of both molecular delivery efficiency and cell viability. This study presents Forster resonance energy transfer (FRET)-based method that allows molecular transfer and cell viability evaluation in a single measurement by employing two common fluorescent dyes, namely, ethidium bromide and trypan blue. The method has been validated using cell sonoporation. The FRET-based method allows the efficiency evaluation of both reversible and irreversible sonoporation in a single experiment. …

0301 basic medicineMaterials scienceCell SurvivalSonicationSingle measurementBiomedical EngineeringCHO CellsBiomaterials03 medical and health scienceschemistry.chemical_compoundSonicationCricetulusEthidiumFluorescence Resonance Energy TransferAnimalsHumansViability assayFluorescent DyesTrypan BlueFluorescenceAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materials030104 developmental biologyFörster resonance energy transferchemistryBiophysicsTrypan blueEthidium bromideSonoporationJournal of biomedical optics
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Flexible multi-beam light-sheet fluorescence microscope for live imaging without striping artifacts

2018

The development of light-sheet fluorescence microscopy (LSFM) has greatly expanded the experimental capabilities in many biological and biomedical research fields, enabling for example live studies of murine and zebrafish neural activity or of cell growth and division. The key feature of the method is the selective illumination of a sample single plane, providing an intrinsic optical sectioning and allowing direct 2D image recording. On the other hand, this excitation scheme is more affected by absorption or scattering artifacts in comparison to point scanning methods, leading to un-even illumination. We present here an easily implementable method, based on acousto-optical deflectors (AOD),…

0301 basic medicineMaterials scienceOptical sectioningNeuroscience (miscellaneous)acousto optic deflectorbrain imagingAcousto optic deflector; Brain imaging; Fast volumetric imaging; Light-sheet fluorescence microscopy; Striping artifacts; Zebrafish; Anatomy; Neuroscience (miscellaneous); Cellular and Molecular Neurosciencelight-sheet fluorescence microscopy striping artifacts fast volumetric imaging acousto optic deflector brain imaging zebrafishfast volumetric imaginglcsh:RC321-571lcsh:QM1-69503 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineOpticsLive cell imagingFluorescence microscopeTechnology ReportAbsorption (electromagnetic radiation)lcsh:Neurosciences. Biological psychiatry. Neuropsychiatrybusiness.industryScatteringlcsh:Human anatomyzebrafishSample (graphics)striping artifactsAcousto optic deflector Brain imaging Fast volumetric imaging Light-sheet fluorescence microscopy Striping artifacts Zebrafish Anatomy Neuroscience (miscellaneous) Cellular and Molecular Neurosciencelight-sheet fluorescence microscopy030104 developmental biologyFeature (computer vision)Light sheet fluorescence microscopyAnatomybusiness030217 neurology & neurosurgeryNeuroscience
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2017

Significant progress in nonlinear and ultrafast optics has recently opened new and exciting opportunities for terahertz (THz) science and technology, which require the development of reliable THz sources, detectors, and supporting devices. In this work, we demonstrate the first solid-state technique for the coherent detection of ultra-broadband THz pulses (0.1–10 THz), relying on the electric-field-induced second-harmonic generation in a thin layer of ultraviolet fused silica. The proposed CMOS-compatible devices, which can be realized with standard microfabrication techniques, allow us to perform ultra-broadband detection with a high dynamic range by employing probe laser powers and bias v…

0301 basic medicineMaterials sciencebusiness.industryDynamic rangeTerahertz radiationDetectorPhysics::OpticsSecond-harmonic generationLaser01 natural sciences7. Clean energyAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materialslaw.invention03 medical and health sciences030104 developmental biologyOpticslaw0103 physical sciencesOptoelectronicsHeterodyne detection010306 general physicsbusinessUltrashort pulseMicrofabricationOptica
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Super-resolved linear fluorescence localization microscopy using photostable fluorophores: A virtual microscopy study

2017

Abstract Current approaches to overcome the conventional limit of the resolution potential of light microscopy (of about 200 nm for visible light), often suffer from non-linear effects, which render the quantification of the image intensities in the reconstructions difficult, and also affect the quantification of the biological structure under investigation. As an attempt to face these difficulties, we discuss a particular method of localization microscopy which is based on photostable fluorescent dyes. The proposed method can potentially be implemented as a fast alternative for quantitative localization microscopy, circumventing the need for the acquisition of thousands of image frames and…

0301 basic medicineMaterials sciencebusiness.industryMultispectral imageResolution (electron density)02 engineering and technology021001 nanoscience & nanotechnologyFluorescenceAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materials03 medical and health sciences030104 developmental biologyOpticsMicroscopyCalibrationPhotoactivated localization microscopyElectrical and Electronic EngineeringPhysical and Theoretical Chemistry0210 nano-technologybusinessVirtual microscopyVisible spectrumOptics Communications
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Ranolazine-Mediated Attenuation of Mechanoelectric Feedback in Atrial Myocyte Monolayers.

2020

[EN] Background Mechanical stretch increases Na(+)inflow into myocytes, related to mechanisms including stretch-activated channels or Na+/H(+)exchanger activation, involving Ca(2+)increase that leads to changes in electrophysiological properties favoring arrhythmia induction. Ranolazine is an antianginal drug with confirmed beneficial effects against cardiac arrhythmias associated with the augmentation ofI(NaL)current and Ca(2+)overload. Objective This study investigates the effects of mechanical stretch on activation patterns in atrial cell monolayers and its pharmacological response to ranolazine. Methods Confluent HL-1 cells were cultured in silicone membrane plates and were stretched to…

0301 basic medicineMechanical stretchOptical mappingMechanoelectric feedbackPhysiologyRanolazine030204 cardiovascular system & hematologyFibrillatory patternslcsh:PhysiologyTECNOLOGIA ELECTRONICA03 medical and health sciences0302 clinical medicineRanolazinePhysiology (medical)Optical mappingMonolayermechanoelectric feedbackmedicineMyocyterotor dynamic analysisAtrial myocytesranolazineOriginal ResearchFibrillationHL-1 celllcsh:QP1-981ChemistryAttenuationmechanical stretchElectrophysiologyRotor dynamic analysisoptical mapping030104 developmental biologyfibrillatory patternsBiophysicsmedicine.symptommedicine.drugFrontiers in physiology
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Melanoma-Nevus Discrimination Based on Image Statistics in Few Spectral Channels

2016

The purpose of this paper is to offer a method for discrimination of cutaneous melanoma from benign nevus, founded on analysis of skin lesion image. At the core of method is calculation of mean and standard deviation of pixel optical density values for a few narrow spectral bands. Calculated values are compared with discriminating thresholds derived from a set of images of benign nevi and melanomas with known diagnosis. Classification is done applying weighted majority rule to results of thresholding. Verification against the available multispectral images of 32 melanomas and 94 benign nevi has shown that the method using three spectral bands provided zero false negative and four false posi…

0301 basic medicineNevi and melanomasContextual image classificationImage classificationmelanoma detection.Multispectral imageSpectral bandsbiomedical optical imagingmedicine.disease01 natural sciencesThresholdingStandard deviation010104 statistics & probability03 medical and health sciences030104 developmental biologyCutaneous melanomaStatisticsmultispectral imagingmedicineNevus0101 mathematicsElectrical and Electronic EngineeringMathematicsElektronika ir Elektrotechnika
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Three-dimensional multiple-particle tracking with nanometric precision over tunable axial ranges

2017

The precise localization of nanometric objects in three dimensions is essential to identify functional diffusion mechanisms in complex systems at the cellular or molecular level. However, most optical methods can achieve high temporal resolution and high localization precision only in two dimensions or over a limited axial (z) range. Here we develop a novel wide-field detection system based on an electrically tunable lens that can track multiple individual nanoscale emitters in three dimensions over a tunable axial range with nanometric localization precision. The optical principle of the technique is based on the simultaneous acquisition of two images with an extended depth of field while …

0301 basic medicineOptical devicesMaterials scienceComplex system02 engineering and technologyTracking (particle physics)Deformable mirrorlaw.invention03 medical and health sciencesOpticsPosition (vector)lawAtomic and Molecular PhysicsElectronicImaging systemsDepth of fieldOptical and Magnetic MaterialsFluorescence microscopy; Imaging systems; Microscopy; Optical devices; Three-dimensional image processing; Electronic; Optical and Magnetic Materials; Atomic and Molecular Physics; and OpticsFluorescence microscopyMicroscopybusiness.industryThree-dimensional image processingFluorescence microscopy; Imaging systems; Microscopy; Optical devices; Three-dimensional image processing; Electronic Optical and Magnetic Materials; Atomic and Molecular Physics and Optics021001 nanoscience & nanotechnologyAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsNumerical apertureLens (optics)030104 developmental biologyTemporal resolutionand Optics0210 nano-technologybusinessFluorescence microscopy Imaging systems Microscopy Optical devices Three-dimensional image processing Electronic Optical and Magnetic Materials Atomic and Molecular Physics and Optics
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