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.
Conception de médicamentLa conception de médicament, plus précisément conception de substance pharmacologiquement active plus connue sous sa dénomination anglaise Drug design est l'ensemble des processus nécessaires à l'élaboration d'un médicament. Dans l'industrie pharmaceutique, ces processus peuvent-être subdivisés et répartis en quatre phases ou étapes : La phase de recherche La phase de développement La phase clinique La phase de mise sur le marché Remarque : Les phases de recherche et développement sont communément dénommées R&D.
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.
Métabolisme du calciumLe métabolisme du calcium est la façon dont le corps humain régularise sa concentration sanguine : absorption, excrétion et stockage. Il conditionne aussi la constitution du squelette et d'autres structures calciques. Ces 2 aspects interagissent étroitement avec la signalisation cellulaire, puisque le calcium est aussi messager de l'information cellulaire. La concentration en calcium libre dans le liquide extracellulaire est maintenue dans des limites étroites par une régulation rigoureuse (homéostasie).
Spin–lattice relaxationDuring nuclear magnetic resonance observations, spin–lattice relaxation is the mechanism by which the longitudinal component of the total nuclear magnetic moment vector (parallel to the constant magnetic field) exponentially relaxes from a higher energy, non-equilibrium state to thermodynamic equilibrium with its surroundings (the "lattice"). It is characterized by the spin–lattice relaxation time, a time constant known as T1.
High-content screeningHigh-content screening (HCS), also known as high-content analysis (HCA) or cellomics, is a method that is used in biological research and drug discovery to identify substances such as small molecules, peptides, or RNAi that alter the phenotype of a cell in a desired manner. Hence high content screening is a type of phenotypic screen conducted in cells involving the analysis of whole cells or components of cells with simultaneous readout of several parameters.
Biologie cellulairethumb|Détection de filaments d'actine dans des cellules animales (immunofluorescence) La biologie cellulaire (anciennement appelée cytologie) est une discipline scientifique qui étudie les cellules, du point de vue structural et fonctionnel, et les utilise pour des applications en biotechnologie. Elle s'intéresse à l'écosystème cellulaire, c'est-à-dire à l'équilibre dynamique et autorégulé des fonctions cellulaires, dans un contexte normal ou perturbé.
Stem-cell nicheStem-cell niche refers to a microenvironment, within the specific anatomic location where stem cells are found, which interacts with stem cells to regulate cell fate. The word 'niche' can be in reference to the in vivo or in vitro stem-cell microenvironment. During embryonic development, various niche factors act on embryonic stem cells to alter gene expression, and induce their proliferation or differentiation for the development of the fetus.
Intermediate frequencyIn communications and electronic engineering, an intermediate frequency (IF) is a frequency to which a carrier wave is shifted as an intermediate step in transmission or reception. The intermediate frequency is created by mixing the carrier signal with a local oscillator signal in a process called heterodyning, resulting in a signal at the difference or beat frequency. Intermediate frequencies are used in superheterodyne radio receivers, in which an incoming signal is shifted to an IF for amplification before final detection is done.
Fragment-based lead discoveryFragment-based lead discovery (FBLD) also known as fragment-based drug discovery (FBDD) is a method used for finding lead compounds as part of the drug discovery process. Fragments are small organic molecules which are small in size and low in molecular weight. It is based on identifying small chemical fragments, which may bind only weakly to the biological target, and then growing them or combining them to produce a lead with a higher affinity. FBLD can be compared with high-throughput screening (HTS).