Linked from
The 71 pages that link to Proprioception, each with the reason it gives.
Vestibular systemRelated: The brain combines it with vestibular input to estimate body orientation.
Motor controlRelated: It supplies feedback about limb position needed to guide and correct actions.
Embodied cognitionRelated: It gives cognition access to bodily state without relying on vision.
WalkingRelated: It helps coordinate limb placement and balance without relying solely on vision.
RunningRelated: It helps coordinate limb placement and balance without relying on vision.
SetaRelated: Setae on joints or limbs can report movement and contact during locomotion.
BalanceRelated: It reports limb and joint positions without relying on vision.
Balance (ability)Related: It signals limb and trunk positions without relying on vision.
Body schemaRelated: Its signals help update the body schema as limbs move.
Phantom limbRelated: Phantom limbs may seem to have a specific posture or to move.
Postural controlRelated: It provides information about limb position without relying on vision.
AgilityRelated: It helps movement remain controlled when visual attention is elsewhere.
Boxing footworkRelated: It supports precise stepping and balance without constant visual monitoring.
EmbodimentRelated: It supplies bodily awareness through which space and action are experienced.
HandRelated: It helps coordinate finger movements without constant visual monitoring.
Insect legRelated: Sensory feedback helps insects coordinate leg position and movement.
DizzinessRelated: Errors in body-position signals can contribute to unsteadiness.
Masticatory apparatusRelated: It helps coordinate jaw position and force while chewing.
SprainRelated: Ligament injury can disrupt joint-position signals and coordination.
UkemiRelated: Proprioception helps practitioners orient themselves while rotating or landing.
Muscular systemRelated: Feedback from muscles helps coordinate posture and movement.
Edgar AdrianRelated: His work on muscle receptors clarified the nerve signals underlying this sense.
JointRelated: Signals from joint-associated receptors help coordinate movement and detect position.
PilatesRelated: Precise Pilates movement depends on sensing alignment and adjusting it continuously.
Human legRelated: It helps regulate leg placement and balance without continuous visual monitoring.
Index fingerRelated: It helps control index-finger placement without relying on vision.