Event-related potentialAn event-related potential (ERP) is the measured brain response that is the direct result of a specific sensory, cognitive, or motor event. More formally, it is any stereotyped electrophysiological response to a stimulus. The study of the brain in this way provides a noninvasive means of evaluating brain functioning. ERPs are measured by means of electroencephalography (EEG). The magnetoencephalography (MEG) equivalent of ERP is the ERF, or event-related field. Evoked potentials and induced potentials are subtypes of ERPs.
Potentiel évoquéUn potentiel évoqué (PE, dit aussi ERP pour l'anglais Event-Related Potential) désigne la modification du potentiel électrique produite par le système nerveux en réponse à une stimulation externe, notamment sensorielle (un son, une image, etc.) mais aussi à un événement interne, notamment une activité cognitive (attention, préparation motrice, etc.) et enregistré grâce à des techniques comme l'électroencéphalographie (EEG) ou la magnétoencéphalographie (MEG).
Difference due to memoryDifference due to memory (Dm) indexes differences in neural activity during the study phase of an experiment for items that subsequently are remembered compared to items that are later forgotten. It is mainly discussed as an event-related potential (ERP) effect that appears in studies employing a subsequent memory paradigm, in which ERPs are recorded when a participant is studying a list of materials and trials are sorted as a function of whether they go on to be remembered or not in the test phase.
BereitschaftspotentialIn neurology, the Bereitschaftspotential or BP (German for "readiness potential"), also called the pre-motor potential or readiness potential (RP), is a measure of activity in the motor cortex and supplementary motor area of the brain leading up to voluntary muscle movement. The BP is a manifestation of cortical contribution to the pre-motor planning of volitional movement. It was first recorded and reported in 1964 by Hans Helmut Kornhuber and Lüder Deecke at the University of Freiburg in Germany.
N400La N400 est une composante de signaux EEG appelés potentiels liés aux événements (ERP). Il s'agit d'une déviation négative qui culmine environ 400 millisecondes après la présentation du stimulus, bien qu'elle puisse s'étendre de 250 à 500 ms, et est généralement maximale sur les électrodes centro-pariétaux. La N400 fait partie de la réponse normale du cerveau aux mots et autres stimuli significatifs (ou potentiellement significatifs), y compris les mots visuels et auditifs, les signes en langue des signes, les , les visages, les sons environnementaux et les odeurs.
P600 (neuroscience)The P600 is an event-related potential (ERP) component, or peak in electrical brain activity measured by electroencephalography (EEG). It is a language-relevant ERP component and is thought to be elicited by hearing or reading grammatical errors and other syntactic anomalies. Therefore, it is a common topic of study in neurolinguistic experiments investigating sentence processing in the human brain.
Potentiel d'inversionLe potentiel d'inversion pour un canal ionique, ou plus généralement pour un courant ionique, est la valeur du potentiel de membrane pour laquelle le flux ionique est nul. Il s'agit en fait de la valeur de potentiel de membrane à laquelle une espèce ionique est en équilibre électro-osmotique. C’est-à-dire que pour ce potentiel de membrane, la force électrique due à la différence de potentiel de part et d'autre de la membrane et la force chimique due à la différence de concentration (ou force osmotique) sont égales et de sens opposés.
P200In neuroscience, the visual P200 or P2 is a waveform component or feature of the event-related potential (ERP) measured at the human scalp. Like other potential changes measurable from the scalp, this effect is believed to reflect the post-synaptic activity of a specific neural process. The P2 component, also known as the P200, is so named because it is a positive going electrical potential that peaks at about 200 milliseconds (varying between about 150 and 275 ms) after the onset of some external stimulus.
Lateralized readiness potentialIn neuroscience, the lateralized readiness potential (LRP) is an event-related brain potential, or increase in electrical activity at the surface of the brain, that is thought to reflect the preparation of motor activity on a certain side of the body; in other words, it is a spike in the electrical activity of the brain that happens when a person gets ready to move one arm, leg, or foot. It is a special form of bereitschaftspotential (a general pre-motor potential).
N170The N170 is a component of the event-related potential (ERP) that reflects the neural processing of faces, familiar objects or words. Furthermore, the N170 is modulated by prediction error processes. When potentials evoked by images of faces are compared to those elicited by other visual stimuli, the former show increased negativity 130-200 ms after stimulus presentation. This response is maximal over occipito-temporal electrode sites, which is consistent with a source located at the fusiform and inferior-temporal gyri, confirmed by electrocorticography.