Cortex visuelLe occupe le lobe occipital du cerveau et est chargé de traiter les informations visuelles. Le cortex visuel couvre le lobe occipital, sur les faces latérales et internes, et empiète sur le lobe pariétal et le lobe temporal. L'étude du cortex visuel en neurosciences a permis de le découper en une multitude de sous-régions fonctionnelles (V1, V2, V3, V4, MT) qui traitent chacune ou collectivement des multiples propriétés des informations provenant des voies visuelles (formes, couleurs, mouvements).
Object recognition (cognitive science)Visual object recognition refers to the ability to identify the objects in view based on visual input. One important signature of visual object recognition is "object invariance", or the ability to identify objects across changes in the detailed context in which objects are viewed, including changes in illumination, object pose, and background context. Neuropsychological evidence affirms that there are four specific stages identified in the process of object recognition.
ÉlectroencéphalographieL'électroencéphalographie (EEG) est une méthode d'exploration cérébrale qui mesure l'activité électrique du cerveau par des électrodes placées sur le cuir chevelu souvent représentée sous la forme d'un tracé appelé électroencéphalogramme. Comparable à l'électrocardiogramme qui permet d'étudier le fonctionnement du cœur, l'EEG est un examen indolore et non invasif qui renseigne sur l'activité neurophysiologique du cerveau au cours du temps et en particulier du cortex cérébral soit dans un but diagnostique en neurologie, soit dans la recherche en neurosciences cognitives.
Visual memoryVisual memory describes the relationship between perceptual processing and the encoding, storage and retrieval of the resulting neural representations. Visual memory occurs over a broad time range spanning from eye movements to years in order to visually navigate to a previously visited location. Visual memory is a form of memory which preserves some characteristics of our senses pertaining to visual experience. We are able to place in memory visual information which resembles objects, places, animals or people in a mental image.
Vuethumb|250px|Ommatidies de krill antarctique, composant un œil primitif adapté à une vision sous-marine. thumb|250px|Yeux de triops, primitifs et non mobiles. thumb|250px|Yeux multiples d'une araignée sauteuse (famille des Salticidae, composée d'araignées chassant à l'affut, mode de chasse nécessitant une très bonne vision). thumb|250px|Œil de la libellule Platycnemis pennipes, offrant un champ de vision très large, adapté à un comportement de prédation.
Two-streams hypothesisThe two-streams hypothesis is a model of the neural processing of vision as well as hearing. The hypothesis, given its initial characterisation in a paper by David Milner and Melvyn A. Goodale in 1992, argues that humans possess two distinct visual systems. Recently there seems to be evidence of two distinct auditory systems as well. As visual information exits the occipital lobe, and as sound leaves the phonological network, it follows two main pathways, or "streams".
Language processing in the brainIn psycholinguistics, language processing refers to the way humans use words to communicate ideas and feelings, and how such communications are processed and understood. Language processing is considered to be a uniquely human ability that is not produced with the same grammatical understanding or systematicity in even human's closest primate relatives. Throughout the 20th century the dominant model for language processing in the brain was the Geschwind-Lichteim-Wernicke model, which is based primarily on the analysis of brain-damaged patients.
Visual agnosiaVisual agnosia is an impairment in recognition of visually presented objects. It is not due to a deficit in vision (acuity, visual field, and scanning), language, memory, or intellect. While cortical blindness results from lesions to primary visual cortex, visual agnosia is often due to damage to more anterior cortex such as the posterior occipital and/or temporal lobe(s) in the brain.[2] There are two types of visual agnosia: apperceptive agnosia and associative agnosia. Recognition of visual objects occurs at two primary levels.
Visual processingVisual processing is a term that is used to refer to the brain's ability to use and interpret visual information from the world around us. The process of converting light energy into a meaningful image is a complex process that is facilitated by numerous brain structures and higher level cognitive processes. On an anatomical level, light energy first enters the eye through the cornea, where the light is bent. After passing through the cornea, light passes through the pupil and then lens of the eye, where it is bent to a greater degree and focused upon the retina.
Intraoperative neurophysiological monitoringIntraoperative neurophysiological monitoring (IONM) or intraoperative neuromonitoring is the use of electrophysiological methods such as electroencephalography (EEG), electromyography (EMG), and evoked potentials to monitor the functional integrity of certain neural structures (e.g., nerves, spinal cord and parts of the brain) during surgery. The purpose of IONM is to reduce the risk to the patient of iatrogenic damage to the nervous system, and/or to provide functional guidance to the surgeon and anesthesiologist.