Search results for "HTFI"

showing 5 items of 5 documents

Optical sectioning microscopy through single-shot Lightfield protocol

2020

Optical sectioning microscopy is usually performed by means of a scanning, multi-shot procedure in combination with non-uniform illumination. In this paper, we change the paradigm and report a method that is based in the light field concept, and that provides optical sectioning for 3D microscopy images after a single-shot capture. To do this we fi rst capture multiple orthographic perspectives of the sample by means of Fourier-domain integral microscopy (FiMic). The second stage of our protocol is the application of a novel refocusing algorithm that is able to produce optical sectioning in real time, and with no resolution worsening, in the case of sparse f luorescent samples.We provide the…

FiMicGeneral Computer ScienceOptical sectioningComputer scienceComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISION02 engineering and technology3d microscopy01 natural sciences010309 opticsOptics0103 physical sciencesMicroscopyGeneral Materials ScienceProtocol (object-oriented programming)Fourier integral microscopebusiness.industryResolution (electron density)Orthographic projectionGeneral EngineeringSingle shotfourier lightfield microscopeGPU computingÒptica021001 nanoscience & nanotechnologySample (graphics)Microscòpialightfield microscopeoptical sectioninglcsh:Electrical engineering. Electronics. Nuclear engineering0210 nano-technologybusinesslcsh:TK1-9971
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The Lightfield Microscope Eyepiece

2021

Lightfield microscopy has raised growing interest in the last few years. Its ability to get three-dimensional information about the sample in a single shot makes it suitable for many applications in which time resolution is fundamental. In this paper we present a novel device, which is capable of converting any conventional microscope into a lightfield microscope. Based on the Fourier integral microscope concept, we designed the lightfield microscope eyepiece. This is coupled to the eyepiece port, to let the user exploit all the host microscope’s components (objective turret, illumination systems, translation stage, etc.) and get a 3D reconstruction of the sample. After the optical design, …

FiMicMicroscopeComputer scienceComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONTP1-1185Translation (geometry)BiochemistryAnalytical Chemistrylaw.inventionEyepieceOpticslawlightfield eyepieceMicroscopyplenoptic eyepieceElectrical and Electronic EngineeringInstrumentationLightingFourier integral microscopeMicroscopylightfield microscopybusiness.industryCommunicationChemical technology3D reconstructionSingle shotTime resolutionSample (graphics)Atomic and Molecular Physics and OpticsÒptica Aparells i instrumentsMicroscòpia3D microscopybusinessSensors
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Machine Learning-Based View Synthesis in Fourier Lightfield Microscopy

2022

Current interest in Fourier lightfield microscopy is increasing, due to its ability to acquire 3D images of thick dynamic samples. This technique is based on simultaneously capturing, in a single shot, and with a monocular setup, a number of orthographic perspective views of 3D microscopic samples. An essential feature of Fourier lightfield microscopy is that the number of acquired views is low, due to the trade-off relationship existing between the number of views and their corresponding lateral resolution. Therefore, it is important to have a tool for the generation of a high number of synthesized view images, without compromising their lateral resolution. In this context we investigate h…

InformáticaMicroscopyFourier lightfield microscopy; view synthesis; neural radiance fields; 3D microscopyComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONBiochemistryComputer scienceAtomic and Molecular Physics and OpticsAnalytical ChemistryMachine LearningMicroscòpiaInstrumento ópticoImaging Three-DimensionalTecnología avanzadaAlgoritmoNeural radiance fields3D microscopyFourier lightfield microscopyElectrical and Electronic EngineeringView synthesisFourier Anàlisi deInstrumentation
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Peut-on réduire les herbicides sans perdre de rendement ?

2019

Afin de concevoir des systèmes agricoles durables et économes en herbicides, il est indispensable de comprendre les relations entre usage d'herbicides, niveau d’infestation par les adventices et pertes de rendement. Comme les agriculteurs raisonnent l'utilisation des herbicides en fonction de la flore et de leurs autres pratiques (ex. travail du sol, date de semis, rotation), il est difficile d'évaluer ces relations directement en parcelles agricoles, tant les possibilités sont nombreuses. Notre étude a donc choisi de traiter la question via l’utilisation d’un modèle de simulation. Nous avons collecté et simulé 272 systèmes de culture d'agriculteurs de sept régions avec la flore adventice t…

[SDE] Environmental Sciencesnuisibilité[SDV]Life Sciences [q-bio]yield lossHTFIsimulation[SDV] Life Sciences [q-bio]IFT herbicidenuisanceherbicide[SDE]Environmental Sciencesperte de rendement;IFT herbicide;adventice;simulation;nuisibilité; yield loss;HTFI;herbicide;weed;simulation;nuisance[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologyadventiceweed
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Capture and visualization of biological 3D samples through lightfield imaging and display techniques

2022

La microscopía óptica convencional proporciona imágenes de alta resolución de muestras microscópicas. Sin embargo, su escasa profundidad de campo y su falta de seccionado óptico hacen que sea inadecuada para la observación de especímenes tridimensionales. Para solucionar este problema, se han propuesto varias técnicas de microscopía 3D, la mayoría de ellas basadas en procedimientos de escaneo. La microscopía lightfield, en cambio, es una técnica de reciente desarrollo, que es capaz de capturar información 3D de muestras gruesas en una sola toma. Esto se consigue registrando de forma simultánea la información espacial y angular de los rayos procedentes de cada punto del objeto. Esta caracter…

lightfield microscopy:FÍSICA [UNESCO]UNESCO::FÍSICA3d microscopylightfield display3d display
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