Functional neuroimagingFunctional neuroimaging is the use of neuroimaging technology to measure an aspect of brain function, often with a view to understanding the relationship between activity in certain brain areas and specific mental functions. It is primarily used as a research tool in cognitive neuroscience, cognitive psychology, neuropsychology, and social neuroscience.
Gamma waveA gamma wave or gamma rhythm is a pattern of neural oscillation in humans with a frequency between 25 and 140 Hz, the 40 Hz point being of particular interest. Gamma rhythms are correlated with large scale brain network activity and cognitive phenomena such as working memory, attention, and perceptual grouping, and can be increased in amplitude via meditation or neurostimulation. Altered gamma activity has been observed in many mood and cognitive disorders such as Alzheimer's disease, epilepsy, and schizophrenia.
Principe d'incertitudeEn mécanique quantique, le principe d'incertitude ou, plus correctement, principe d'indétermination, aussi connu sous le nom de principe d'incertitude de Heisenberg, désigne toute inégalité mathématique affirmant qu'il existe une limite fondamentale à la précision avec laquelle il est possible de connaître simultanément deux propriétés physiques d'une même particule ; ces deux variables dites complémentaires peuvent être sa position (x) et sa quantité de mouvement (p).
Numerical methods for ordinary differential equationsNumerical methods for ordinary differential equations are methods used to find numerical approximations to the solutions of ordinary differential equations (ODEs). Their use is also known as "numerical integration", although this term can also refer to the computation of integrals. Many differential equations cannot be solved exactly. For practical purposes, however – such as in engineering – a numeric approximation to the solution is often sufficient. The algorithms studied here can be used to compute such an approximation.
Dérivation numériqueEn analyse numérique, les algorithmes de dérivation numérique évaluent la dérivée d'une fonction mathématique ou d'un sous-programme de fonction en utilisant les valeurs de la fonction et peut-être d'autres propriétés connues sur la fonction. droite|255x255px La méthode la plus simple consiste à utiliser des approximations de différences finies. Une simple estimation à deux points consiste à calculer la pente d'une droite sécante proche passant par les points et .
Spin-weighted spherical harmonicsIn special functions, a topic in mathematics, spin-weighted spherical harmonics are generalizations of the standard spherical harmonics and—like the usual spherical harmonics—are functions on the sphere. Unlike ordinary spherical harmonics, the spin-weighted harmonics are U(1) gauge fields rather than scalar fields: mathematically, they take values in a complex line bundle. The spin-weighted harmonics are organized by degree l, just like ordinary spherical harmonics, but have an additional spin weight s that reflects the additional U(1) symmetry.
Numerical linear algebraNumerical linear algebra, sometimes called applied linear algebra, is the study of how matrix operations can be used to create computer algorithms which efficiently and accurately provide approximate answers to questions in continuous mathematics. It is a subfield of numerical analysis, and a type of linear algebra. Computers use floating-point arithmetic and cannot exactly represent irrational data, so when a computer algorithm is applied to a matrix of data, it can sometimes increase the difference between a number stored in the computer and the true number that it is an approximation of.
ParameterA parameter (), generally, is any characteristic that can help in defining or classifying a particular system (meaning an event, project, object, situation, etc.). That is, a parameter is an element of a system that is useful, or critical, when identifying the system, or when evaluating its performance, status, condition, etc. Parameter has more specific meanings within various disciplines, including mathematics, computer programming, engineering, statistics, logic, linguistics, and electronic musical composition.
F-divergenceIn probability theory, an -divergence is a function that measures the difference between two probability distributions and . Many common divergences, such as KL-divergence, Hellinger distance, and total variation distance, are special cases of -divergence. These divergences were introduced by Alfréd Rényi in the same paper where he introduced the well-known Rényi entropy. He proved that these divergences decrease in Markov processes.
Optimisation (mathématiques)L'optimisation est une branche des mathématiques cherchant à modéliser, à analyser et à résoudre analytiquement ou numériquement les problèmes qui consistent à minimiser ou maximiser une fonction sur un ensemble. L’optimisation joue un rôle important en recherche opérationnelle (domaine à la frontière entre l'informatique, les mathématiques et l'économie), dans les mathématiques appliquées (fondamentales pour l'industrie et l'ingénierie), en analyse et en analyse numérique, en statistique pour l’estimation du maximum de vraisemblance d’une distribution, pour la recherche de stratégies dans le cadre de la théorie des jeux, ou encore en théorie du contrôle et de la commande.