Stress–strain curveIn engineering and materials science, a stress–strain curve for a material gives the relationship between stress and strain. It is obtained by gradually applying load to a test coupon and measuring the deformation, from which the stress and strain can be determined (see tensile testing). These curves reveal many of the properties of a material, such as the Young's modulus, the yield strength and the ultimate tensile strength. Generally speaking, curves representing the relationship between stress and strain in any form of deformation can be regarded as stress–strain curves.
Polymère électroactifvignette|Figure 1 : The black strips are the working electroactif polymers. They are powered with the same squared voltage. 300px|vignette|Figure 2 : illustration d'une pince en EAP. (a) Une tension est appliquée, les deux doigts en EAP se déforment de sorte à contourner la balle. (b) Lorsque la tension électrique est coupée, les doigts en EAP reprennent leur forme d'origine et attrapent la balle. (c). Les polymères électroactifs (PEA) ( (EAP)), sont des polymères dont la forme ou la taille changent lorsqu'ils sont stimulés par un champ électrique.
Cellule ciliéevignette|Coupe transversale d'une spire de l'organe de Corti, avec ses cellules ciliées (en). Les cellules ciliées sont des cellules sensorielles coiffées de structures filamenteuses, les stéréocils, qui tapissent la cochlée des vertébrés, et faisant partie à la fois de leur systèmes auditif et vestibulaire. Ces cellules sont disposées le long d'une membrane (la membrane basilaire) qui vient partitionner la cochlée en deux petites chambres. L'ensemble des cellules ciliées et des membranes qui leur sont adjointes constitue l'organe de Corti.
Fabrication des dispositifs à semi-conducteursthumb|upright=1.5|Évolution de la finesse de gravure des processeurs entre 1970 et 2017 La fabrication des dispositifs à semi-conducteur englobe les différentes opérations permettant l'élaboration de composants électroniques basés sur des matériaux semi-conducteurs. Entrent dans cette catégorie de composants à semi-conducteur, les composants discrets qui n'ont qu'une seule fonction comme les diodes et les transistors, et les circuits intégrés plus complexes, intégrant plusieurs composants, jusqu'à des milliards, dans le même boîtier.
Immune responseAn immune response is a physiological reaction which occurs within an organism in the context of inflammation for the purpose of defending against exogenous factors. These include a wide variety of different toxins, viruses, intra- and extracellular bacteria, protozoa, helminths, and fungi which could cause serious problems to the health of the host organism if not cleared from the body. In addition, there are other forms of immune response.
Polyclonal B cell responsePolyclonal B cell response is a natural mode of immune response exhibited by the adaptive immune system of mammals. It ensures that a single antigen is recognized and attacked through its overlapping parts, called epitopes, by multiple clones of B cell. In the course of normal immune response, parts of pathogens (e.g. bacteria) are recognized by the immune system as foreign (non-self), and eliminated or effectively neutralized to reduce their potential damage. Such a recognizable substance is called an antigen.
Stress–strain analysisStress–strain analysis (or stress analysis) is an engineering discipline that uses many methods to determine the stresses and strains in materials and structures subjected to forces. In continuum mechanics, stress is a physical quantity that expresses the internal forces that neighboring particles of a continuous material exert on each other, while strain is the measure of the deformation of the material. In simple terms we can define stress as the force of resistance per unit area, offered by a body against deformation.
Immunité cellulaireCell-mediated immunity or cellular immunity is an immune response that does not involve antibodies. Rather, cell-mediated immunity is the activation of phagocytes, antigen-specific cytotoxic T-lymphocytes, and the release of various cytokines in response to an antigen. In the late 19th century Hippocratic tradition medicine system, the immune system was imagined into two branches: humoral immunity, for which the protective function of immunization could be found in the humor (cell-free bodily fluid or serum) and cellular immunity, for which the protective function of immunization was associated with cells.
Microelectrode arrayMicroelectrode arrays (MEAs) (also referred to as multielectrode arrays) are devices that contain multiple (tens to thousands) microelectrodes through which neural signals are obtained or delivered, essentially serving as neural interfaces that connect neurons to electronic circuitry. There are two general classes of MEAs: implantable MEAs, used in vivo, and non-implantable MEAs, used in vitro. Neurons and muscle cells create ion currents through their membranes when excited, causing a change in voltage between the inside and the outside of the cell.
Lymphocyte TLes lymphocytes T, ou cellules T, sont une catégorie de leucocytes qui jouent un grand rôle dans la réponse immunitaire adaptative. « T » est l'abréviation de thymus, l'organe dans lequel leur développement s'achève. Ils sont responsables de l'immunité cellulaire : les cellules infectées par un virus par exemple, ou les cellules cancéreuses reconnues comme étrangères à l'organisme (c'est-à-dire distinctes des cellules que les lymphocytes T ont appris à tolérer lors de leur maturation) sont détruites par un mécanisme complexe.