About this trial
The nervous system responds to changes in external or internal conditions by altering the behavior of neurons through multiple forms of neural plasticity. A specific form of plasticity, "homeostatic plasticity", stabilizes neural activity by driving the excitability of neurons toward a "set-point" level of activity. Over the last six years, new data have come to light showing that the vestibular system also possess a robust capacity to modulate sensitivity to self-motion cues in response to prolonged periods of motion. Collectively, these studies have demonstrated a capacity to use motion perturbations (i.e., low, or high levels of vestibular stimulation) to dynamically adjust the sensitivity of the vestibular system on both the single neuron and behavioral levels. The ability to use subthreshold motion stimuli to drive plasticity in the vestibular system motivates this study. The investigators aim to determine the impact of subthreshold motion on (a) balance performance and (b) balance training in individuals with peripheral vestibular hypofunction.
Eligibility criteria
Qualifiers
Must be able to stand for 5 minutes unassisted
No leg or foot amputations
No lower limb braces
Not currently pregnant by self-report
Disqualifiers
Severe head trauma or traumatic brain injury
History of seizures
Alternative neurologic illness or condition known to impact vestibular or balance function (e.g., stroke, neurodegenerative disorders, demyelinating illness)
Major psychiatric (e.g., panic disorder, psychosis, etc.) disorder
Trial design
Treatments tested in this trial
- Subthreshold Vestibular Conditioning
- Balance Training
- Balance Training Plus Subthreshold Conditioning
Treatment groups
Sponsors and collaborators
Creighton University
Lead sponsor
National Institute on Deafness and Other Communication Disorders (NIDCD)
Collaborator