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Postural Control: Toe-standing Versus Heel-toe Standing

Overview
Journal Gait Posture
Specialty Orthopedics
Date 2004 Jan 27
PMID 14741299
Citations 3
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Abstract

Toe-standing is observed in a number of populations who are able to stand without loss of balance and also those who have balance problems. Intuitively, individuals who stand on their toes are able to successfully regulate their whole body movement in order to keep themselves stable. Force platform data were collected for ten able-bodied subjects during three quiet standing postures, (a) heel-toe standing; (b) half-toe standing and (c) standing en demi pointe (full toe-standing). Differences in control mechanisms with each posture were compared using stabilogram diffusion analysis. During open-loop control (short-term), toe-standing is less stable than heel-toe standing (P<0.05). There is greater stochastic activity when toe-standing (P<0.05), suggesting that any short-term instability is being compensated for by an increase in muscle activity across the lower joints. During closed-loop control (long-term), there is no difference in mediolateral (ML) stochastic activity (increased activity has been linked to falls) between toe-standing and heel-toe standing. In addition, toe-standing is more stable than heel-toe standing (P< s0.05). Toe-standing, in and of itself, may not be responsible for balance problems in populations who compulsorily toe-stand.

Citing Articles

State-Space Characterization of Balance Capabilities in Biped Systems with Segmented Feet.

Mummolo C, Akbas K, Carbone G Front Robot AI. 2021; 8:613038.

PMID: 33718440 PMC: 7952635. DOI: 10.3389/frobt.2021.613038.


The effect of contact sport expertise on postural control.

Liang Y, Hiley M, Kanosue K PLoS One. 2019; 14(2):e0212334.

PMID: 30763383 PMC: 6375620. DOI: 10.1371/journal.pone.0212334.


The effect on human balance of standing with toe-extension.

Ku P, Abu Osman N, Yusof A, Wan Abas W PLoS One. 2012; 7(7):e41539.

PMID: 22848523 PMC: 3405114. DOI: 10.1371/journal.pone.0041539.