LocomotionEn physiologie, la locomotion est la faculté, pour un organisme vivant, de se mouvoir pour se déplacer. Des contraintes sont exercées sur ces organismes suivant le milieu, terrestre, aérien ou aquatique, dans lesquels ils se meuvent. La fonction locomotrice se traduit par un ensemble de mouvements qui entraînent le déplacement de l'être vivant : la progression quadrupède, bipède et apode, dont la reptation, en milieu terrestre, diverses formes de nage et de propulsion en milieu aquatique (système de propulsion par réaction des calmars) et les vols planés ou battus en milieu aérien.
Fish locomotionFish locomotion is the various types of animal locomotion used by fish, principally by swimming. This is achieved in different groups of fish by a variety of mechanisms of propulsion, most often by wave-like lateral flexions of the fish's body and tail in the water, and in various specialised fish by motions of the fins.
Terrestrial locomotionTerrestrial locomotion has evolved as animals adapted from aquatic to terrestrial environments. Locomotion on land raises different problems than that in water, with reduced friction being replaced by the increased effects of gravity. As viewed from evolutionary taxonomy, there are three basic forms of animal locomotion in the terrestrial environment: legged – moving by using appendages limbless locomotion – moving without legs, primarily using the body itself as a propulsive structure.
Moelle spinaleLa moelle spinale (selon la nouvelle nomenclature), ou moelle épinière (dans l’ancienne nomenclature), désigne la partie du système nerveux central qui prolonge la moelle allongée appartenant au tronc cérébral. Elle est contenue dans le canal rachidien (canal formé par la superposition des foramens vertébraux), qui la soutient et la protège. Elle est constituée de neurones et de cellules gliales. Sa fonction principale est la transmission des messages nerveux entre le cerveau et le reste du corps.
Undulatory locomotionUndulatory locomotion is the type of motion characterized by wave-like movement patterns that act to propel an animal forward. Examples of this type of gait include crawling in snakes, or swimming in the lamprey. Although this is typically the type of gait utilized by limbless animals, some creatures with limbs, such as the salamander, forgo use of their legs in certain environments and exhibit undulatory locomotion. In robotics this movement strategy is studied in order to create novel robotic devices capable of traversing a variety of environments.
Aquatic locomotionAquatic locomotion or swimming is biologically propelled motion through a liquid medium. The simplest propulsive systems are composed of cilia and flagella. Swimming has evolved a number of times in a range of organisms including arthropods, fish, molluscs, amphibians, reptiles, birds, and mammals. Swimming evolved a number of times in unrelated lineages. Supposed jellyfish fossils occur in the Ediacaran, but the first free-swimming animals appear in the Early to Middle Cambrian.
Traumatisme médullaireUn traumatisme médullaire ou traumatisme de la moelle épinière (ou moelle spinale) met en jeu le pronostic vital immédiat ou retardé. Il est à l'origine de troubles moteurs et sensitifs, et de troubles des fonctions neuro-végétatives. La médicalisation systématique et les progrès de la prise en charge pré-hospitalière ont permis d'améliorer considérablement la survie de ces blessés. L'évolution des connaissances, notamment dans la physiopathologie des lésions cellulaires, fait proposer régulièrement de nouvelles attitudes thérapeutiques, parfois controversées.
Robotic sensingRobotic sensing is a subarea of robotics science intended to provide sensing capabilities to robots. Robotic sensing provides robots with the ability to sense their environments and is typically used as feedback to enable robots to adjust their behavior based on sensed input. Robot sensing includes the ability to see, touch, hear and move and associated algorithms to process and make use of environmental feedback and sensory data.
Robotiquethumb|upright=1.5|Nao, un robot humanoïde. thumb|upright=1.5|Des robots industriels au travail dans une usine. La robotique est l'ensemble des techniques permettant la conception et la réalisation de machines automatiques ou de robots. L'ATILF donne la définition suivante du robot : « il effectue, grâce à un système de commande automatique à base de microprocesseur, une tâche précise pour laquelle il a été conçu dans le domaine industriel, scientifique, militaire ou domestique ».
Rotating locomotion in living systemsSeveral organisms are capable of rolling locomotion. However, true wheels and propellers—despite their utility in human vehicles—do not seem to play a significant role in the movement of living things (with the exception of certain flagella, which work like corkscrews). Biologists have offered several explanations for the apparent absence of biological wheels, and wheeled creatures have appeared often in speculative fiction.