Frequentist probabilityFrequentist probability or frequentism is an interpretation of probability; it defines an event's probability as the limit of its relative frequency in many trials (the long-run probability). Probabilities can be found (in principle) by a repeatable objective process (and are thus ideally devoid of opinion). The continued use of frequentist methods in scientific inference, however, has been called into question. The development of the frequentist account was motivated by the problems and paradoxes of the previously dominant viewpoint, the classical interpretation.
Inductive probabilityInductive probability attempts to give the probability of future events based on past events. It is the basis for inductive reasoning, and gives the mathematical basis for learning and the perception of patterns. It is a source of knowledge about the world. There are three sources of knowledge: inference, communication, and deduction. Communication relays information found using other methods. Deduction establishes new facts based on existing facts. Inference establishes new facts from data. Its basis is Bayes' theorem.
MotoneuroneLes motoneurones constituent la voie de sortie du système nerveux central ou la voie finale de tout acte moteur. Les corps cellulaires des motoneurones sont situés soit dans le tronc cérébral, soit dans la corne ventrale de la substance grise de la moelle épinière. Chaque motoneurone possède un axone qui part du système nerveux central pour innerver les fibres musculaires d'un muscle. L'ensemble constitué par un motoneurone et les fibres musculaires qu'il innerve constitue une unité motrice.
Apprentissage moteur. Les approches basées sur les théories de l’apprentissage moteur tiennent habituellement compte de quatre variables principales: les étapes d’apprentissage, le type de tâche à réaliser, la pratique et le feedback. Le processus d’apprentissage moteur comprend trois stades. Le premier est le stade cognitif, c’est-à-dire que l’individu connaît chaque séquence de la tâche à réaliser, mais il ne sait pas exactement comment l’exécuter. Ensuite, il y a le stade associatif, qui correspond au raffinement des habiletés motrices et à la diminution d’erreurs.
Jeffreys priorIn Bayesian probability, the Jeffreys prior, named after Sir Harold Jeffreys, is a non-informative prior distribution for a parameter space; its density function is proportional to the square root of the determinant of the Fisher information matrix: It has the key feature that it is invariant under a change of coordinates for the parameter vector . That is, the relative probability assigned to a volume of a probability space using a Jeffreys prior will be the same regardless of the parameterization used to define the Jeffreys prior.
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.
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.
Performance engineeringPerformance engineering encompasses the techniques applied during a systems development life cycle to ensure the non-functional requirements for performance (such as throughput, latency, or memory usage) will be met. It may be alternatively referred to as systems performance engineering within systems engineering, and software performance engineering or application performance engineering within software engineering.
Job performanceJob performance assesses whether a person performs a job well. Job performance, studied academically as part of industrial and organizational psychology, also forms a part of human resources management. Performance is an important criterion for organizational outcomes and success. John P. Campbell describes job performance as an individual-level variable, or something a single person does. This differentiates it from more encompassing constructs such as organizational performance or national performance, which are higher-level variables.
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.