Motor skillA motor skill is a function that involves specific movements of the body's muscles to perform a certain task. These tasks could include walking, running, or riding a bike. In order to perform this skill, the body's nervous system, muscles, and brain have to all work together. The goal of motor skill is to optimize the ability to perform the skill at the rate of success, precision, and to reduce the energy consumption required for performance. Performance is an act of executing a motor skill or task.
Motor controllerA motor controller is a device or group of devices that can coordinate in a predetermined manner the performance of an electric motor. A motor controller might include a manual or automatic means for starting and stopping the motor, selecting forward or reverse rotation, selecting and regulating the speed, regulating or limiting the torque, and protecting against overloads and electrical faults. Motor controllers may use electromechanical switching, or may use power electronics devices to regulate the speed and direction of a motor.
Electric motorAn electric motor is an electrical machine that converts electrical energy into mechanical energy. Most electric motors operate through the interaction between the motor's magnetic field and electric current in a wire winding to generate force in the form of torque applied on the motor's shaft. An electric generator is mechanically identical to an electric motor, but operates with a reversed flow of power, converting mechanical energy into electrical energy.
Induction motorAn induction motor or asynchronous motor is an AC electric motor in which the electric current in the rotor needed to produce torque is obtained by electromagnetic induction from the magnetic field of the stator winding. An induction motor can therefore be made without electrical connections to the rotor. An induction motor's rotor can be either wound type or squirrel-cage type. Three-phase squirrel-cage induction motors are widely used as industrial drives because they are self-starting, reliable, and economical.
Contrôle moteurEn neurosciences, le contrôle moteur est la capacité de faire des ajustements posturaux dynamiques et de diriger le corps et les membres dans le but de faire un mouvement déterminé. Le mouvement volontaire est initié par le cortex moteur primaire et le cortex prémoteur. Le signal est ensuite transmis aux circuits du tronc cérébral et de la moelle épinière qui activent les muscles squelettiques qui, en se contractant, produisent un mouvement. Le mouvement produit renvoie des informations proprioceptives au système nerveux central (SNC).
Brushed DC electric motorA brushed DC electric motor is an internally commutated electric motor designed to be run from a direct current power source and utilizing an electric brush for contact. Brushed motors were the first commercially important application of electric power to driving mechanical energy, and DC distribution systems were used for more than 100 years to operate motors in commercial and industrial buildings. Brushed DC motors can be varied in speed by changing the operating voltage or the strength of the magnetic field.
Primary somatosensory cortexIn neuroanatomy, the primary somatosensory cortex is located in the postcentral gyrus of the brain's parietal lobe, and is part of the somatosensory system. It was initially defined from surface stimulation studies of Wilder Penfield, and parallel surface potential studies of Bard, Woolsey, and Marshall. Although initially defined to be roughly the same as Brodmann areas 3, 1 and 2, more recent work by Kaas has suggested that for homogeny with other sensory fields only area 3 should be referred to as "primary somatosensory cortex", as it receives the bulk of the thalamocortical projections from the sensory input fields.
Cortex cérébralLe cortex cérébral (ou écorce cérébrale), d'origine prosencéphalique, est la substance grise périphérique des hémisphères cérébraux. Il se compose de trois couches (pour l'archi- et le paléocortex) à six couches (pour le néocortex) renfermant différentes classes de neurones, d'interneurones et de cellules gliales. Le cortex peut être segmenté en différentes aires selon des critères cytoarchitectoniques (nombre de couches, type de neurones), de leur connexions, notamment avec le thalamus, et de leur fonction.
Cortex moteurLe cortex moteur désigne l'ensemble des aires du cortex cérébral qui participent à la planification, au contrôle et à l'exécution des mouvements volontaires des muscles du corps. D'un point de vue anatomique, le cortex moteur est situé dans la partie postérieure du lobe frontal, au niveau de la région caudale de la circonvolution frontale ascendante en avant du sillon central. Le cortex moteur est en interaction constante avec d'autres structures nerveuses impliquées dans le mouvement comme le système des ganglions de la base et le cervelet.
Homonculus moteurvignette|Lhomuncule moteur. L'homoncule moteur désigne l'organisation de la commande motrice des muscles du corps humain à la surface du cerveau. Le gyrus pré-central (ou circonvolution frontale ascendante) du cortex cérébral est peuplé de grands neurones pyramidaux, dits « cellules de Betz » qui sont le point de départ des axones qui constituent la voie pyramidale. Cette partie du cortex est l'aire 4 de Brodmann.