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.
Intégration sensorielleL’intégration sensorielle fait référence à plusieurs concepts différents. En neurophysiologie, l’intégration sensorielle se réfère au processus neurologique impliquant la réception, la modulation et l’intégration des informations sensorielles. Le système nerveux transforme les sensations en perceptions en organisant les informations sensorielles provenant du corps et de l’environnement (fournies par les différents systèmes sensoriels : tactile, auditif, visuel, gustatif/olfactif, vestibulaire, proprioceptif) afin d’utiliser efficacement le corps.
Multisensory integrationMultisensory integration, also known as multimodal integration, is the study of how information from the different sensory modalities (such as sight, sound, touch, smell, self-motion, and taste) may be integrated by the nervous system. A coherent representation of objects combining modalities enables animals to have meaningful perceptual experiences. Indeed, multisensory integration is central to adaptive behavior because it allows animals to perceive a world of coherent perceptual entities.
Non-spiking neuronNon-spiking neurons are neurons that are located in the central and peripheral nervous systems and function as intermediary relays for sensory-motor neurons. They do not exhibit the characteristic spiking behavior of action potential generating neurons. Non-spiking neural networks are integrated with spiking neural networks to have a synergistic effect in being able to stimulate some sensory or motor response while also being able to modulate the response.
Cell typeA cell type is a classification used to identify cells that share morphological or phenotypical features. A multicellular organism may contain cells of a number of widely differing and specialized cell types, such as muscle cells and skin cells, that differ both in appearance and function yet have identical genomic sequences. Cells may have the same genotype, but belong to different cell types due to the differential regulation of the genes they contain.
Système sensorielUn système sensoriel est une partie du système nerveux responsable de la sensation. Il regroupe les récepteurs sensoriels, les voies nerveuses, et les parties du cerveau responsables du traitement de l'information sensorielle. L'ensemble des systèmes sensoriels se divisent en sensibilité générale ou somesthésie et en sens dits spécifiques : la vision, l'odorat, le goût, l'ouïe et le toucher. Il existe sept sens : les cinq sens vu ci-dessus (vision, odorat, goût, ouïe et toucher), ainsi que le système vestibulaire et le système proprioceptif.
Potentiel d'actionvignette|Le déplacement d'un potentiel d'action le long d'un axone, modifie la polarité de la membrane cellulaire. Les canaux ioniques sodium Na+ et potassium K+ voltage-dépendants s'ouvrent puis se ferment quand la membrane atteint le potentiel seuil, en réponse à un signal en provenance d'un autre neurone. À l'initiation du potentiel d'action, le canal Na+ s'ouvre et le Na+ extracellulaire rentre dans l'axone, provoquant une dépolarisation. Ensuite la repolarisation se produit lorsque le canal K+ s'ouvre et le K+ intracellulaire sort de l'axone.
MuscleLe muscle est un organe composé de tissu mou retrouvé chez les animaux. Il est composé de tissus musculaires et de tissus conjonctifs (+ vaisseaux sanguins + nerfs). Les cellules musculaires (composant le tissu musculaire) contiennent des filaments protéiques d'actine et de myosine qui glissent les uns sur les autres, produisant une contraction qui modifie à la fois la longueur et la forme de la cellule. Les muscles fonctionnent pour produire de la force et du mouvement.
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".
Potentiel postsynaptique inhibiteurAn inhibitory postsynaptic potential (IPSP) is a kind of synaptic potential that makes a postsynaptic neuron less likely to generate an action potential. IPSPs were first investigated in motorneurons by David P. C. Lloyd, John Eccles and Rodolfo Llinás in the 1950s and 1960s. The opposite of an inhibitory postsynaptic potential is an excitatory postsynaptic potential (EPSP), which is a synaptic potential that makes a postsynaptic neuron more likely to generate an action potential.