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Computerized Dynamic Posturography for Postural Control Assessment in Patients with Intermittent Claudication
Published on: December 11, 2013
Postural Control, Sleep Quality, and Body Composition in Patients With Ménière's Disease: A Cross-sectional Study
Aitor Yusta-Ceacero1, Sergio Serrada-Tejeda1, Paula Obeso-Benítez1
1Department of Physical Therapy, Occupational Therapy, Rehabilitation and Physical Medicine, Faculty of Health Sciences, Rey Juan Carlos University, Madrid, Spain.
Objective:
To examine the relationship between postural control, sleep quality, and body composition in patients with Ménière's disease (MD) compared with controls, and identify predictors of balance.
Study Design:
Cross-sectional case-control study conducted January to July 2024.
Setting:
University research laboratories specializing in rehabilitation.
Patients:
Forty-two adults (21 with MD, 21 age- and sex-matched controls). Exclusion criteria included multiple vestibular diagnoses, neurological or psychiatric disorders, and uncorrected visual impairment.
Interventions:
Not applicable.
Main Outcome Measures:
Postural control (Sensory Organization Test, Limits of Stability, Rhythmic Weight Shift), sleep quality (Pittsburgh Sleep Quality Index, Insomnia Severity Index), and body composition (bioimpedance: BMI, fat mass, fat percentage, visceral fat).
Results:
MD patients showed significantly poorer sleep than controls (PSQI: 9.8 vs. 4.5; mean difference 5.3; P <.001; r=0.60; ISI: 11.1 vs. 4.5; mean difference 6.6; P <.001; r=0.54). Posturography revealed lower SOT composite scores (57.0 vs. 82.5; P <.001; r=0.69), more falls (3.5 vs. 0.1; P <.001; r=0.65), and reduced vestibular function (30.4 vs. 66.1; P <.001; r=0.56). LOS and RWS showed slower velocities and mediolateral instability (LOS velocity: 2.1 vs. 3.5; P =.002; r=0.49; RWS axis velocity: 4.8 vs. 5.8; P =.008; r=0.41). Higher fat mass (22.0 vs. 17.3 kg; P =.034; d=0.58) and fat percentage (30.5% vs. 24.7%; P =.025; d=0.62) were associated with impaired balance. Regression (adjusted R²=.816) identified age, disease duration, tinnitus, insomnia, and LOS/RWS as significant predictors.
Conclusions:
Postural control in MD is influenced by vestibular, sleep, and anthropometric factors. Poor sleep and adiposity were independently linked to imbalance, supporting multidimensional assessment and rehabilitation addressing sleep and weight.
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