ArticlePloS one2020
On the importance of the hip abductors during a clinical one legged balance test: A theoretical study.
Article in PloS one, 2020. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed, 9 citations in OpenAlex.
- Reduced Effective Postural Responses to External Perturbations in Chronic Ankle Instability.Scandinavian journal of medicine & science in sports · 2026Article
- Distinct patterns in neuromuscular adaptation to repeated perturbations in chronic ankle instability.Journal of neuroengineering and rehabilitation · 2025Article
- Clinical estimates of three physiologic capacities explain a majority of unipedal stance time.Aging clinical and experimental research · 2025Article
- The Effects of a Floss Band on Ankle Range of Motion, Balance, and Gait in Chronic Stroke: A Randomized Controlled Study.Healthcare (Basel, Switzerland) · 2024Article
- Ultrasound measures of muscle thickness and subcutaneous tissue from the hip abductors: Inter- and intra-rater reliability.Musculoskeletal science & practice · 2022Article
- A Non-Weight Bearing Method for Measuring Hip Abduction Strength Overestimates Hip Abductor Muscle Fatigue During One-Leg Stance.IISE transactions on occupational ergonomics and human factorsArticle
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Authors and funding
2 authors at 1 institution in 1 country.
Funding
Abstract
backgroundThe ability to balance on one foot for a certain time is a widely used clinical test to assess the effects of age and diseases like peripheral neuropathy on balance. While state-space methods have been used to explore the mechanical demands and achievable accelerations for balancing on two feet in the sagittal plane, less is known about the requirements for sustaining one legged balance (OLB) in the frontal plane. RESEARCH QUESTION: While most studies have focused on ankle function in OLB, can age and/or disease-related decreases in maximum hip abduction strength also affect OLB ability?
methodsA two-link frontal plane state space model was used to define and explore the 'feasible balance region' which helps reveal the requirements for maintaining and restoring OLB, given the adverse effects of age and peripheral neuropathy on maximum hip and ankle strengths.
resultsMaintaining quasistatic OLB required 50%-106% of the maximum hip abduction strength in young and older adults, and older patients with peripheral neuropathy. Effectiveness of a 'hip strategy' in recovering OLB was heavily dependent on the maximum hip abduction strength, and for healthy older women was as important as ankle strength. Natural reductions of strength due to healthy aging did not show a meaningful reduction in meeting the strength requirement of clinical OLB. However deficits in hip strength typical of patients with peripheral neuropathy did adversely affect both quasistatic OLB and recoverable OLB states. SIGNIFICANCE: The importance of hip muscle strength has been underappreciated in the clinical OLB test. This is partly because the passive tissues of the hip joint can mask moderate deficits in hip abduction strength until it is needed for recovering OLB. Adding a follow up OLB test with a slightly raised pelvis would be a simple way to check for adequate hip abductor muscle strength.
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