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Purpose: Accurate perception of body position relative to the environment through visual cues provides sensory input to the control of postural stability. This study explored which vision measures are most important for control of postural sway in older adults with a range of visual characteristics.
Methods: Participants included 421 older adults (mean age = 72.6 ± 6.1), 220 with vision impairment associated with a range of eye diseases and 201 with normal vision. Participants completed a series of vision, cognitive, and physical function tests. Postural sway was measured using an electronic forceplate (HUR Labs) on a foam surface with eyes open. Linear regression analysis identified the strongest visual predictors of postural sway, controlling for potential confounding factors, including cognitive and physical function.
Results: In univariate regression models, unadjusted and adjusted for age, all of the vision tests were significantly associated with postural sway (P < 0.05), with the strongest predictor being visual motion sensitivity (standardized regression coefficient, β = 0.340; age-adjusted β = 0.253). In multiple regression models, motion sensitivity (β = 0.187), integrated binocular visual fields (β = -0.109), and age (β = 0.234) were the only significant visual predictors of sway, adjusted for confounding factors, explaining 23% of the variance in postural sway.
Conclusions: Of the vision tests, visual motion perception and binocular visual fields were most strongly associated with postural stability in older adults with and without vision impairment.
Translational Relevance: Findings provide insight into the visual contributions to postural stability in older adults and have implications for falls risk assessment.
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http://dx.doi.org/10.1167/tvst.11.8.24 | DOI Listing |
Front Neurol
August 2025
Otolaryngology-Head and Neck Surgery, The Ohio State University Wexner Medical Center, Columbus, OH, United States.
Introduction: External continuous perturbations using a motion platform have been developed by employing either sum-of-sines (SoS) or a pseudorandom ternary sequence (PRTS) of numbers to quantify body sway evoked in the medial-lateral (ML) or anterior-posterior (AP) directions, which ultimately helps understand the human postural control system. These stimuli have been provided via pitch tilts of the motion platform for evaluations of AP balance responses or roll tilts for ML balance responses. However, little is known about whether a healthy postural control system responds to 2-dimensional (2D) perturbations similarly when the perturbation stimuli are provided in semicircular canal coordinates (i.
View Article and Find Full Text PDFKnee Surg Sports Traumatol Arthrosc
September 2025
Biomechanics Laboratory, School of Physical Education & Sport Science at Thessaloniki, Aristotle University of Thessaloniki, Thessaloniki, Greece.
Purpose: Total knee arthroplasty (TKA) is associated with acute postoperative effects that increase the risk of falls. These effects differ between the medial parapatellar (PP) and mid-vastus (MV) surgical techniques but have not been evaluated in terms of postural sway complexity. Loss of this complexity leads to increased randomness in the center of pressure and higher fall risk.
View Article and Find Full Text PDFFront Hum Neurosci
August 2025
UR-UPJV EA 3300 APERE Adaptations Physiologiques à l'Exercice et Réadaptation à l'Effort, Université de Picardie Jules Verne, Amiens, France.
Posturography is a useful technique that allows to explore postural control, a complex motor skill enabling body orientation and stability. Analyzing postural control is one way to assess body responses to various emotional stimuli. By examining the displacement of the center of pressure, it is possible to investigate postural adjustments of individuals confronted with emotional stimuli.
View Article and Find Full Text PDFGait Posture
September 2025
UHasselt, REVAL Rehabilitation Research Center, Faculty of Rehabilitation Sciences, Wetenschapspark 7, Diepenbeek 3590, Belgium. Electronic address:
Objective: Although emotions and postural control are strongly intertwined, more research is necessary to understand this intricate relationship. Therefore, we examined the effect of script-driven emotional imagery on postural control in healthy individuals.
Methods: Forty-four healthy participants (50 % female, median age=27) imagined three emotional imagery scripts (hostile, acceptance, relaxation) in upright standing without visual input while center of pressure (CoP) was measured (mean sway, sway velocity, , and standard deviation in antero-posterior and medio-lateral directions, and sway path and area).
Gait Posture
August 2025
Faculty of Education, Free University of Bozen-Bolzano, Viale Ratisbona 16, Brixen-Bressanone 39042, Italy. Electronic address:
Objective: This study examined the acute effect of training on postural balance among young dinghy sailors. By measuring sway path and sway area of the center of pressure (CoP), the objective was to investigate whether training sessions on dinghy sailboat influence sway path and sway area measurements.
Methods: Twelve competitive sailors (Optimist and Laser Radial class) performed a set of balance tests on both stable and unstable surfaces, with open and closed eyes, measured over three days.