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In motor control, proprioceptors provide critical feedback to the central nervous system. Muscle spindles relay information regarding muscle stretch, Golgi tendon organs relay information regarding tendon force, and gamma motoneurons modulate muscle spindle feedback.
Proprioception is mediated by proprioceptors, sensory receptors, located within muscles ... For evaluating proprioception's contribution to motor control, ...
Motor control is the regulation of movements in organisms that possess a nervous system. Motor control includes conscious voluntary movements, ... (e.g. proprioceptors).
A muscle spindle, with γ motor and Ia sensory fibers. A type Ia sensory fiber, or a primary afferent fiber, is a type of afferent nerve fiber. [1] It is the sensory fiber of a stretch receptor called the muscle spindle found in muscles, which constantly monitors the rate at which a muscle stretch changes.
The dorsal column–medial lemniscus pathway (DCML) (also known as the posterior column-medial lemniscus pathway (PCML) is the major sensory pathway of the central nervous system that conveys sensations of fine touch, vibration, two-point discrimination, and proprioception (body position) from the skin and joints.
The motor part of the spindle is provided by motor neurons: up to a dozen gamma motor neurons also known as fusimotor neurons. [4] These activate the muscle fibres within the spindle. Gamma motor neurons supply only muscle fibres within the spindle, whereas beta motor neurons supply muscle fibres both within and outside of the spindle.
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Campaniform sensilla function as proprioceptors that detect mechanical load as resistance to muscle contraction, [1] [2] similar to mammalian Golgi tendon organs. [3] [4] Sensory feedback from campaniform sensilla is integrated in the control of posture and locomotion. [5] [6]
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