Auditory contributions to maintaining balance.

Madelyn N Stevens, Dennis L Barbour, Meredith P Gronski, Timothy E Hullar
Author Information
  1. Madelyn N Stevens: Duke University School of Medicine, Durham, NC, USA.
  2. Dennis L Barbour: Department of Biomedical Engineering, Washington University in St. Louis, St. Louis, MO, USA.
  3. Meredith P Gronski: Occupational Therapy Program, Methodist University, Fayetteville, NC, USA.
  4. Timothy E Hullar: Department of Otolaryngology-Head and Neck Surgery, Oregon Health and Science University, Portland, OR, USA.

Abstract

Maintaining balance relies on integration of inputs from the visual, vestibular, and proprioceptive systems. The auditory system has not been credited with a similar contributory role, despite its ability to provide spatial orienting cues with extreme speed and accuracy. Here, we determined the ability of external auditory signals to reduce postural sway, measured as the root-mean-square velocity of center of pressure of a standing subject, in a series of subjects with varying levels of imbalance standing in the dark. The maximum root-mean-square center of pressure among our subjects decreased from 7.0 cm/sec in silence to 4.7 cm/sec.with the addition of external sound. The addition of sound allowed subjects to decrease sway by 41 percent. The amount of improvement due to sound was 54% of the amount of improvement observed in postural sway when visual cues only were provided to subjects standing in silence. These data support the significant effect of the auditory system in providing balance-related cues and suggest that interventions such as hearing aids or cochlear implants may be useful in improving postural stability and reducing falls.

Keywords

MeSH Term

Adolescent
Adult
Aged
Auditory Perception
Child
Cues
Female
Hearing Tests
Humans
Male
Middle Aged
Photic Stimulation
Postural Balance
Proprioception
Vestibular Diseases
Vestibular Function Tests
Young Adult

Word Cloud

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