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.
Brain connectivity estimatorsBrain connectivity estimators represent patterns of links in the brain. Connectivity can be considered at different levels of the brain's organisation: from neurons, to neural assemblies and brain structures. Brain connectivity involves different concepts such as: neuroanatomical or structural connectivity (pattern of anatomical links), functional connectivity (usually understood as statistical dependencies) and effective connectivity (referring to causal interactions).
Chiasma optiqueLe chiasma optique est la partie du cerveau où les deux nerfs optiques se croisent. Chaque rétine est divisée en deux hémirétines (une nasale interne et une temporale externe), les voies optiques des hémirétines nasales subissant une décussation (changement de côté) au niveau du chiasma. Le chiasma optique permet la décussation d’un certain nombre d’axones en provenance de la rétine, c’est-à-dire leur changement de côté pour assurer le traitement croisé de l’information visuelle.
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".
Pretectal areaIn neuroanatomy, the pretectal area, or pretectum, is a midbrain structure composed of seven nuclei and comprises part of the subcortical visual system. Through reciprocal bilateral projections from the retina, it is involved primarily in mediating behavioral responses to acute changes in ambient light such as the pupillary light reflex, the optokinetic reflex, and temporary changes to the circadian rhythm. In addition to the pretectum's role in the visual system, the anterior pretectal nucleus has been found to mediate somatosensory and nociceptive information.
Colonne corticalevignette|Reconstruction 3D de cinq colonnes corticales dans le cortex vibratoire du rat Une colonne corticale est un groupe de neurones situés dans le cortex cérébral dont les champs de réception sont identiques. D’ailleurs, si on introduit une microélectrode perpendiculairement à travers les différentes couches du cortex visuel, on ne rencontrera par exemple que des neurones qui ont la même préférence d’orientation, qu’ils aient des champs récepteurs simples ou complexes. Il s'agit dans cet exemple d'une colonne d'orientation.
Thalamocortical radiationsIn neuroanatomy, thalamocortical radiations also known as thalamocortical fibres, are the efferent fibres that project from the thalamus to distinct areas of the cerebral cortex. They form fibre bundles that emerge from the lateral surface of the thalamus. Thalamocortical fibers (TC fibres) have been referred to as one of the two constituents of the isothalamus, the other being microneurons. Thalamocortical fibers have a bush or tree-like appearance as they extend into the internal capsule and project to the layers of the cortex.
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.
Claustrumvignette|214x214px|Coupe frontale du cerveau au niveau de la partie moyenne du troisième ventricule montrant le claustrum (flèche rouge) Le claustrum (ou avant-mur) est une fine couche de matière grise cérébrale située entre le putamen en dedans et l'insula en dehors, dont il est séparé par les capsules externe et extrême, respectivement. Le claustrum entretient des connexions réciproques avec le néocortex, ainsi qu'avec l'hypothalamus latéral, l'amygdale baso-latérale, le noyau basal de Meynert, le corps genouillé latéral et le noyau thalamique intralaminaire centro-latéral.
Asymétrie cérébraleEn neurosciences cognitives, l'asymétrie cérébrale est l'inégale implication des deux hémisphères du cerveau dans les différentes fonctions mentales. Dans leur anatomie générale, les deux hémisphères sont très semblables mais il existe un certain nombre de caractéristiques plus fines qui les distinguent l'un de l'autre. Le lien entre ces différences structurelles et les différences fonctionnelles reste mal compris.