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Motor learning is the relatively permanent change in the ability to perform a skill as a result of practice or experience. Performance is an act of executing a motor skill. 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.
Motor skills develop in different parts of a body along three principles: Cephalocaudal – the principle that development occurs from head to tail. For example, infants first learn to lift their heads on their own, followed by sitting up with assistance, then sitting up by themselves. Followed by scooting, crawling, pulling up, and then walking.
Psychomotor learning is the relationship between cognitive functions and physical movement.Psychomotor learning is demonstrated by physical skills such as movement, coordination, manipulation, dexterity, grace, strength, speed—actions which demonstrate the fine or gross motor skills, such as use of precision instruments or tools, and walking.
Motor learning is also accomplished on the musculoskeletal level. Each motor neuron in the body innervates one or more muscle cells, and together these cells form what is known as a motor unit. For a person to perform even the simplest motor task, the activity of thousands of these motor units must be coordinated.
The Knowledge, Skills, and Abilities (KSA) framework, is a series of narrative statements that, along with résumés, determines who the best applicants are when several candidates qualify for a job. The knowledge, skills, and abilities (KSAs) necessary for the successful performance of a position are contained on each job vacancy announcement ...
A skill is the learned or innate [1] ability to act with determined results with good execution often within a given amount of time, energy, or both. [2] Skills can often [quantify] be divided into domain-general and domain-specific skills. Some examples of general skills include time management, teamwork [3] and leadership, [4] and self ...
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The existence of motor equivalence, i.e., the ability to perform the same action in multiple ways for instance using different muscles or the same muscles under different conditions. This suggests that a general code specifying the final output exists which is translated into specific muscle action sequences