View clinical trials related to Vestibular Diseases.
Filter by:Context and justification: Vertigo leads to medical consultation, interruption of daily activities or work stoppage in 80% of cases. Optokinetic stimulation is used in awareness and adaptation exercises. The technology of three-dimensional head-mounted provides a strong immersion allowing optokinetic stimulation but studies interested in virtual reality in the context of balance rehabilitation have not been able to highlight the superiority of this therapy. The investigators therefore propose a non-inferiority trial because of the affordable price and small size of three-dimensional head-mounted. Objectives : The objective of this study is to evaluate whether a rehabilitation program using virtual reality is as effective as a reference program using Smart Equitest and an optokinetic stimulator to improve the balance of patients with vestibular syndrome after 3 or 4 weeks of rehabilitation. The investigators also assess the disability related to vertigo and balance disorders as well as the tolerance of virtual reality Methodology: Prospective, randomized controlled non-inferiority trial, monocentric, 2 parallel arm, with blind assessed after 3 or 4 weeks of follow-up. The inclusion criteria are the pathologies eligible for a vestibular rehabilitation program and the possible standing position. The criteria for non-inclusion are visually impaired or blind subjects, lack of relief vision, history of epilepsy, significant strabismus, permanent bilateral vestibular areflexes and Ménière's disease. The main evaluation criterion is the balance score obtained with eyes closed on an unstable plane during a sensory organization test performed on a dynamic posturology platform, obtained during the final evaluation. The secondary judgment criteria are: - The balance scores obtained in the sensory organization test under other conditions. - The Dizziness Handicap Inventory obtained during the final evaluation and three months after the end of the program. - The tolerance of virtual reality will be measured weekly by the Simulator Sickness Questionnaire. Statistics: The number of subjects to be included is 76, the analysis will first be performed per-protocol, the difference in scores between the two groups will be calculated, as well as its 95% confidence interval. If the lower bound of this interval is above the non-inferiority threshold, the same analysis will be performed on the population intending to treat (all randomized patients). Process: Recruitment and rehabilitation take place at the CH Coste Floret. The duration of inclusions is 27 months, The duration of patient participation in the protocol is 4 months. Patients are cared for 21 or 28 days with two sessions of physiotherapy per day, five days a week, then resolved by telephone 3 months after the rehabilitation Feasibility: CH Coste Floret has the human and material resources necessary to carry out the protocol. The PMSI data show that the department receives about 40 patients per year who are likely to participate in the protocol. Outcomes / perspectives: In the event of a result validating the non-inferiority of virtual reality, this study could provide further evidence of the value of this type of tool for the rehabilitation of subjects suffering from vestibular disorders. In addition, a medico-economic study would be possible in order to reinforce the advantages of virtual reality helmets.
The objective of this study is to compare the effectiveness of a personalized patient education program to the current hospital education and evaluate its impact using patient satisfaction scores. The investigators hypothesize that a personalized patient education intervention will increase patient's understanding of their diagnosis and satisfaction with the care as reflected in the survey results.
Nearly 2 out of 3 patients with Alzheimer's disease (AD) experience problems with balance and mobility, which places such patients at increased risk of falling. The vestibular (inner ear balance) system plays an important role in balance stability, and vestibular therapy (VT) is well-known to improve balance function in healthy older adults. In this study, the investigators will conduct a first-in-kind randomized clinical trial to evaluate whether vestibular therapy improves reduces falls in patients with AD, in whom this treatment has never been studied.
DFNA9 (Deafness Autosomal Dominant 9) is an autosomal dominant hereditary hearing loss which is associated with vestibular deterioration. The most recent genotype-phenotype correlation studies have been conducted more than 15 years ago. Meanwhile, emerging and valuable vestibular tests have been added to the vestibular test battery. These tests were not available at the time of the correlation studies. The aim of this study is to carry out a prospective cross-sectional study on symptomatic and presymptomatic affected carriers of the Pro51Ser (P51S) Coagulation Factor C Homology (COCH) mutation in order to correlate vestibular data using the complete vestibular test battery with the known data on hearing and vestibular function in relation to age.
Hearing loss is an established independent risk factor for dementia. Likewise, recent research demonstrated cognitive deficits in subjects with vestibular loss. However, in these studies data have not been adjusted for the hearing status of the enrolled study subjects. As hearing loss prevalence is high in patients with vestibular loss, this could be a major confounder. Therefore, in this study the investigators investigate cognition in patients with bilateral vestibulopathy with and without hearing loss. The investigators adjust data for the hearing status of the patients to explore the link between hearing loss, vestibular loss and cognition.
Neck pain, dizziness and headache are common symptoms following mild traumatic brain injury (mTBI). The efficacy of cervical spine and vestibular-ocular system impairments intervention need to be determined. In this randomized clinical trial, a 6-week personalized clinical rehabilitation program on subacute mTBI will be compare to a conventional approach. The rehabilitation program will include cervical spine exercise combined with manual therapy as well as vestibular-ocular rehabilitation. Overall symptoms will be measured by the Post-Concussion Symptoms Scale (PCSS). Disability and symptoms severity related with neck pain, headache and dizziness will also be evaluated after the treatment period and at 6-week post-treatment.
The aim of this study is to assess effect of psychiatric profile on visual sensitivity and overall health status in patients who underwent surgery for vestibular schwannoma and were prehabituated by chemical vestibular ablation.
To investigate the effect of vestibular rehabilitation, with or without medication, on resolving residual dizziness after successful repositioning maneuvers in patients with benign paroxysmal positional.
A prospective, single-blind, four-group multi-center randomized controlled trial (RCT) of targeted rehabilitation exercises for vestibular symptoms and impairments (T-REV) in civilians with mild traumatic brain injury (mTBI) will be conducted at the University of Pittsburgh Medical Center Sports Medicine Concussion Program (UPitt). The four treatment groups will consist of the factorial combinations of low (30%) and high (70%) intensity of exercise crossed with low (12-18 min, 1x/day) and high (12-18 min, 2x/day) frequency. A total of 125 participants aged 18-50 years will be enrolled across years 1-4, with approximately 100 participants completing the whole study. After potential participants with mTBI are screened for the vestibular clinical profile, using domain-specific tests and measures, and enrolled into the study, participants will complete primary and secondary outcome measures and receive a home exercise program that a) targets participants individual deficits, and b) is of the appropriate intensity and frequency for the participant's randomly assigned treatment group. Participants will return for in-clinic visits once per week to receive treatment and progress assigned exercises.
Disorders of vestibular function and balance are an important component of many conditions that commonly affect veterans, such as inner ear diseases, diabetes, and traumatic brain injury. Veterans with vestibular impairment have reduced quality of life, limitations on work and physical activities, and an increased risk of falls. The goal of this research is to develop a more engaging and effective interactive tool for vestibular rehabilitation to improve the lives of affected veterans. The first steps in this process will be to test the ability of the application to facilitate vestibular learning and to test its feasibility in vestibular patients. The hypothesis is that computer-game-based adaptation will induce robust VOR motor learning and will provide an engaging platform for vestibular rehabilitation. Ultimately, our application has the potential to provide more flexible vestibular exercises that will allow therapy to be customized for each patient. It will also have the ability to track a patient's progress over time and to advance exercises as function improves.