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The phrase "if you don't use it, you lose it" is a perfect way to describe these skills, they need to be continuously used. Discrete tasks such as switch gears in an automobile, grasping an object, or striking a match, usually require more fine motor skill than gross motor skills. [3] Both gross and fine motor skills can become weakened or damaged.
Writing is a fine motor skill as it requires subtle motions of the hand and fingers. Motor skills are movements and actions of the bone structures. [1] Typically, they are categorised into two groups: gross motor skills and fine motor skills. Gross motor skills are involved in movement and coordination of the arms, legs, and other large body parts.
Gross motor skills can be further divided into two subgroups of locomotor skills and object control skills. Gross locomotor skills would include running, jumping, sliding, and swimming. Object control skills would include throwing, catching and kicking. Fine motor skills are involved in smaller movements that occur in the wrists, hands, fingers ...
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.
In physiology, motor coordination is the orchestrated movement of multiple body parts as required to accomplish intended actions, like walking. This coordination is achieved by adjusting kinematic and kinetic parameters associated with each body part involved in the intended movement.
Gross motor skills are concerned with the movement of large muscles, or major body movements, such as those involved in walking or kicking, and are associated with normal development. [33] The extent to which one exhibits gross motor skills depends largely on their muscle tone and the strength. [33]
The gradient of motor unit force is correlated with a gradient in motor neuron soma size and motor neuron electrical excitability. This relationship was described by Elwood Henneman and is known as Henneman's size principle , a fundamental discovery of neuroscience and an organizing principle of motor control.
Animation illustrating the concept of motor redundancy: the motor action of bringing the finger in contact with a point in space can be achieved using a wide variety of limb configurations. Motor redundancy is a widely used concept in kinesiology and motor control which states that, for any task the human body can perform, there are effectively ...