Phase-contrast imagingPhase-contrast imaging is a method of that has a range of different applications. It measures differences in the refractive index of different materials to differentiate between structures under analysis. In conventional light microscopy, phase contrast can be employed to distinguish between structures of similar transparency, and to examine crystals on the basis of their double refraction. This has uses in biological, medical and geological science.
Phase-contrast X-ray imagingPhase-contrast X-ray imaging or phase-sensitive X-ray imaging is a general term for different technical methods that use information concerning changes in the phase of an X-ray beam that passes through an object in order to create its images. Standard X-ray imaging techniques like radiography or computed tomography (CT) rely on a decrease of the X-ray beam's intensity (attenuation) when traversing the sample, which can be measured directly with the assistance of an X-ray detector.
Microscope optique en champ procheLe microscope optique en champ proche (MOCP, ou SNOM pour scanning near-field optical microscope ou NSOM pour near-field scanning optical microscopy) ou microscope optique à sonde locale (MOSL) est un type de microscope à sonde locale qui permet d'imager des objets à partir de la détection des ondes évanescentes confinées au voisinage de leur surface (détection en champ proche optique). Le MOCP permet de compenser la diffraction, une des limitations de la microscopie optique.
Microscope à contraste de phasethumb|Photographie d'un cellule épithéliale de joue vue par un Microscope à contraste de phase Le microscope à contraste de phase est un microscope qui exploite les changements de phase d'une onde lumineuse traversant un échantillon. Cet instrument fut développé par le physicien hollandais Frederik Zernike dans les années 1930, ce qui lui valut le prix Nobel de physique en 1953. Emilie Bleeker, physicienne reconnue pour le développement d'instruments, est la première à mettre le microscope à contraste de phase en utilisation.
Quantitative phase-contrast microscopyFORCETOC Quantitative phase contrast microscopy or quantitative phase imaging are the collective names for a group of microscopy methods that quantify the phase shift that occurs when light waves pass through a more optically dense object. Translucent objects, like a living human cell, absorb and scatter small amounts of light. This makes translucent objects much easier to observe in ordinary light microscopes. Such objects do, however, induce a phase shift that can be observed using a phase contrast microscope.
Effet Dopplerthumb|Effet Doppler d'une source sonore en mouvement L'effet Doppler, ou effet Doppler-Fizeau, est le décalage de fréquence d’une onde (mécanique, acoustique, électromagnétique ou d'une autre nature) observée entre les mesures à l'émission et à la réception, lorsque la distance entre l'émetteur et le récepteur varie au cours du temps. On désigne de façon générale ce phénomène physique sous le nom d'effet Doppler.
ObservationL’observation est un des régimes de la preuve scientifique : c'est une expérience d'accumulation et de recueil d'informations sur un phénomène, un objet d'étude, en absence de variables ou sans contrôler les variables et les paramètres. L'observation est une étape différente, et souvent complémentaire, d'une expérimentation ou expérience dite contrôlée. Elle permet de valider/invalider des hypothèses ou de vérifier des observations ou des expérimentations antérieures.
Coherent sheafIn mathematics, especially in algebraic geometry and the theory of complex manifolds, coherent sheaves are a class of sheaves closely linked to the geometric properties of the underlying space. The definition of coherent sheaves is made with reference to a sheaf of rings that codifies this geometric information. Coherent sheaves can be seen as a generalization of vector bundles. Unlike vector bundles, they form an , and so they are closed under operations such as taking , , and cokernels.
Observational studyIn fields such as epidemiology, social sciences, psychology and statistics, an observational study draws inferences from a sample to a population where the independent variable is not under the control of the researcher because of ethical concerns or logistical constraints. One common observational study is about the possible effect of a treatment on subjects, where the assignment of subjects into a treated group versus a control group is outside the control of the investigator.
Diffraction-limited systemIn optics, any optical instrument or system a microscope, telescope, or camera has a principal limit to its resolution due to the physics of diffraction. An optical instrument is said to be diffraction-limited if it has reached this limit of resolution performance. Other factors may affect an optical system's performance, such as lens imperfections or aberrations, but these are caused by errors in the manufacture or calculation of a lens, whereas the diffraction limit is the maximum resolution possible for a theoretically perfect, or ideal, optical system.