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Neurilemmoma clinical trials

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NCT ID: NCT04890132 Enrolling by invitation - Dizziness Clinical Trials

Vestibular Precision: Physiology & Pathophysiology

Start date: July 1, 2020
Phase: N/A
Study type: Interventional

This project will investigate the role of noise in the vestibular system, and in particular its effects on the variability (precision) of vestibular-mediated behaviors. The investigators will study vestibular precision in normal subjects and patients with peripheral vestibular damage, and will investigate its potential plasticity. The goals are to develop a better understanding of the role noise plays in the vestibular system in normal and pathologic populations, and to determine if the brain can learn to improve signal recognition within its inherently noisy neural environment, which would result in improved behavioral precision.

NCT ID: NCT04196933 Enrolling by invitation - Migraine Clinical Trials

Analysis of Vestibular Compensation Following Clinical Intervention for Vestibular Schwannoma

Start date: September 5, 2019
Phase: N/A
Study type: Interventional

Multiple sensory cues are typically generated by discrete events, and while they do not reach the cerebrum simultaneously, the brain can bind them temporally if they are interpreted as corresponding to a single event. The temporal binding of vestibular and non-vestibular sensory cues is poorly understood and has not been studied in detail, despite the fact that the vestibular system operates in an inherently multimodal environment. In this study, the researchers are investigating the physiology and pathophysiology of vestibular temporal binding by studying normal subjects, patients with peripheral and central vestibular dysfunction, and patients with vestibular and cochlear signals provided by prosthetic implants in the inner ear.