Neuronethumb|537x537px|Schéma complet d’un neurone. Un neurone, ou une cellule nerveuse, est une cellule excitable constituant l'unité fonctionnelle de la base du système nerveux. Les neurones assurent la transmission d'un signal bioélectrique appelé influx nerveux. Ils ont deux propriétés physiologiques : l'excitabilité, c'est-à-dire la capacité de répondre aux stimulations et de convertir celles-ci en impulsions nerveuses, et la conductivité, c'est-à-dire la capacité de transmettre les impulsions.
Neural facilitationNeural facilitation, also known as paired-pulse facilitation (PPF), is a phenomenon in neuroscience in which postsynaptic potentials (PSPs) (EPPs, EPSPs or IPSPs) evoked by an impulse are increased when that impulse closely follows a prior impulse. PPF is thus a form of short-term synaptic plasticity. The mechanisms underlying neural facilitation are exclusively pre-synaptic; broadly speaking, PPF arises due to increased presynaptic Ca2+ concentration leading to a greater release of neurotransmitter-containing synaptic vesicles.
Réseau de neurones (biologie)En neurosciences, un réseau de neurones correspond, schématiquement : Soit à un nombre restreint de différents neurones interconnectés, qui ont une fonction précise, comme le ganglion stomatogastrique qui contrôle l'activité des muscles de l'estomac des crustacés. Soit à un grand nombre de neurones similaires interconnectés, qui ont des fonctions plus cognitives, comme les réseaux corticaux qui permettent entre autres la catégorisation.
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.
Neurone formelthumb|Représentation d'un neurone formel (ou logique). Un neurone formel, parfois appelé neurone de McCulloch-Pitts, est une représentation mathématique et informatique d'un neurone biologique. Le neurone formel possède généralement plusieurs entrées et une sortie qui correspondent respectivement aux dendrites et au cône d'émergence du neurone biologique (point de départ de l'axone). Les actions excitatrices et inhibitrices des synapses sont représentées, la plupart du temps, par des coefficients numériques (les poids synaptiques) associés aux entrées.
Electrical synapseAn electrical synapse is a mechanical and electrically conductive link between two neighboring neurons that is formed at a narrow gap between the pre- and postsynaptic neurons known as a gap junction. At gap junctions, such cells approach within about 3.8 nm of each other, a much shorter distance than the 20- to 40-nanometer distance that separates cells at chemical synapse. In many animals, electrical synapse-based systems co-exist with chemical synapses.
Neurosciences computationnellesLes neurosciences computationnelles (NSC) sont un champ de recherche des neurosciences qui s'applique à découvrir les principes computationnels des fonctions cérébrales et de l'activité neuronale, c'est-à-dire des algorithmes génériques qui permettent de comprendre l'implémentation dans notre système nerveux central du traitement de l'information associé à nos fonctions cognitives. Ce but a été défini en premier lieu par David Marr dans une série d'articles fondateurs.
Homeostatic plasticityIn neuroscience, homeostatic plasticity refers to the capacity of neurons to regulate their own excitability relative to network activity. The term homeostatic plasticity derives from two opposing concepts: 'homeostatic' (a product of the Greek words for 'same' and 'state' or 'condition') and plasticity (or 'change'), thus homeostatic plasticity means "staying the same through change". Homeostatic synaptic plasticity is a means of maintaining the synaptic basis for learning, respiration, and locomotion, in contrast to the Hebbian plasticity associated with learning and memory.
Activity-dependent plasticityActivity-dependent plasticity is a form of functional and structural neuroplasticity that arises from the use of cognitive functions and personal experience; hence, it is the biological basis for learning and the formation of new memories. Activity-dependent plasticity is a form of neuroplasticity that arises from intrinsic or endogenous activity, as opposed to forms of neuroplasticity that arise from extrinsic or exogenous factors, such as electrical brain stimulation- or drug-induced neuroplasticity.
Medium spiny neuronMedium spiny neurons (MSNs), also known as spiny projection neurons (SPNs), are a special type of GABAergic inhibitory cell representing 95% of neurons within the human striatum, a basal ganglia structure. Medium spiny neurons have two primary phenotypes (characteristic types): D1-type MSNs of the direct pathway and D2-type MSNs of the indirect pathway. Most striatal MSNs contain only D1-type or D2-type dopamine receptors, but a subpopulation of MSNs exhibit both phenotypes.