Imagerie médicaleL'imagerie médicale regroupe les moyens d'acquisition et de restitution d'images du corps humain à partir de différents phénomènes physiques tels que l'absorption des rayons X, la résonance magnétique nucléaire, la réflexion d'ondes ultrasons ou la radioactivité auxquels on associe parfois les techniques d'imagerie optique comme l'endoscopie. Apparues, pour les plus anciennes, au tournant du , ces techniques ont révolutionné la médecine grâce au progrès de l'informatique en permettant de visualiser indirectement l'anatomie, la physiologie ou le métabolisme du corps humain.
Calibration curveIn analytical chemistry, a calibration curve, also known as a standard curve, is a general method for determining the concentration of a substance in an unknown sample by comparing the unknown to a set of standard samples of known concentration. A calibration curve is one approach to the problem of instrument calibration; other standard approaches may mix the standard into the unknown, giving an internal standard. The calibration curve is a plot of how the instrumental response, the so-called analytical signal, changes with the concentration of the analyte (the substance to be measured).
Orbital planeThe orbital plane of a revolving body is the geometric plane in which its orbit lies. Three non-collinear points in space suffice to determine an orbital plane. A common example would be the positions of the centers of a massive body (host) and of an orbiting celestial body at two different times/points of its orbit. The orbital plane is defined in relation to a reference plane by two parameters: inclination (i) and longitude of the ascending node (Ω).
Effet de matriceEn analyse chimique, l'effet de matrice décrit l'influence de l'environnement chimique d'un atome sur l'intensité de son signal. Les effets de matrice se rencontrent notamment en spectrométrie à plasma à couplage inductif (ICP), en spectrométrie de fluorescence des rayons X ou encore en microsonde de Castaing. Les méthodes modernes d'analyse chimique utilisent en général un phénomène physique où l'intensité du signal dépend de la quantité de certains atomes ou molécules.
Plane of referenceIn celestial mechanics, the plane of reference (or reference plane) is the plane used to define orbital elements (positions). The two main orbital elements that are measured with respect to the plane of reference are the inclination and the longitude of the ascending node. Depending on the type of body being described, there are four different kinds of reference planes that are typically used: The ecliptic or invariable plane for planets, asteroids, comets, etc.
Plan invariableThe invariable plane of a planetary system, also called Laplace's invariable plane, is the plane passing through its barycenter (center of mass) perpendicular to its angular momentum vector. In the Solar System, about 98% of this effect is contributed by the orbital angular momenta of the four jovian planets (Jupiter, Saturn, Uranus, and Neptune). The invariable plane is within 0.5° of the orbital plane of Jupiter, and may be regarded as the weighted average of all planetary orbital and rotational planes.