Skip to content

Preoperative Vestibular Rehabilitation Effectiveness After Vestibular Schwannoma Surgery

Assessment of the Preoperative Vestibular Rehabilitation Effectiveness on Balance Control Compensation After Vestibular Schwannoma Surgery

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02275325
Acronym
ReveSTAN
Enrollment
50
Registered
2014-10-27
Start date
2015-01-31
Completion date
2019-04-30
Last updated
2016-06-21

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Vestibular Schwannoma

Keywords

Posture, Unilateral vestibular deafferentation, Medical management, Preoperative vestibular rehabilitation, Neural plasticity

Brief summary

Vestibular schwannoma (VS) is a benign tumour from Schwann cells surrounding the vestibular nerve, which slowly grows within the internal auditory canal and then into the cerebellopontine angle, leading to a gradual vestibular dysfunction. The slowly progressive alteration of vestibular function allows the gradual implementation of central adaptive mechanisms called vestibular compensation. The total unilateral vestibular deafferentation induced by the surgical tumour removal suddenly leads to a decompensation of this previously compensated situation, which explains why most patients report severe vertigo immediately after surgery and which is responsible for perturbations of the postural control (Parietti-Winkler et al., 2006, 2008, 2010, 2011). Recently, Gauchard et al. (2013) suggested that preoperative and regular physical activity would limit the adverse effects of surgical removal on balance control. Also, patients benefited faster and better from the postoperative vestibular rehabilitation. Thus, preoperative vestibular rehabilitation, including physical and balance exercises, could help to limit postoperative balance disorders and promote postoperative balance compensation. This could lead to a decrease in the duration and cost of the postoperative management and faster improvement of quality of life.

Detailed description

To test this hypothesis, the measured and perceived balance control of the patient and the quality of life will be assessed into two groups: one of two groups will receive preoperative vestibular rehabilitation, carried out by a physiotherapist, and the other not. The assessments will be conducted 45 days and 3 days before surgery, and then 8 days, 30 days, 90 days and 365 days after surgery.

Interventions

OTHERPreoperative vestibular rehabilitation

12 one-hour sessions with exercises of balance on unstable conditions (foam, tilt of the platform, biofeedback)

Sponsors

University of Lorraine
CollaboratorOTHER
Central Hospital, Nancy, France
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 75 Years
Healthy volunteers
No

Inclusion criteria

* Patients with unilateral vestibular schwannoma (stage I to IV according to the Koos classification) with an indication for surgery. * Patients gave their written informed consent * Patients are affiliated to the french social welfare

Exclusion criteria

* Disorders from the motor and/or somesthetic systems (especially the lower limbs) * Contraindications to the scheduled functional assessments: ear pathology different from vestibular schwannoma such as cholesteatoma of the middle ear, tympanic membrane perforation, etc. * Refusal of the surgical procedure

Design outcomes

Primary

MeasureTime frameDescription
Acute balance compensationOne week after surgeryChange in composite equilibrium score from baseline to 8 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation and the composite equilibrium (in %) score is calculated over the six conditions of the Sensory Organization Test (Equitest, Neurocom, USA). Comparison between both groups (preoperative rehabilitation vs. usual).

Secondary

MeasureTime frameDescription
Balance compensation at middle termThree months after surgeryChange in composite equilibrium score from baseline to 90 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation and the composite equilibrium (in %) score is calculated over the six conditions of the Sensory Organization Test (Equitest, Neurocom, USA). Comparison between both groups (preoperative rehabilitation vs. usual).
Balance compensation at long termOne year after surgeryChange in composite equilibrium score from baseline to 365 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation and the composite equilibrium (in %) score is calculated over the six conditions of the Sensory Organization Test (Equitest, Neurocom, USA). Comparison between both groups (preoperative rehabilitation vs. usual).
Preoperative balance compensationFrom baseline to three days before surgeryChange in composite equilibrium score from baseline to three days before surgery. The baseline corresponds to the day before the preoperative rehabilitation and the composite equilibrium (in %) score is calculated over the six conditions of the Sensory Organization Test (Equitest, Neurocom, USA). Comparison between both groups (preoperative rehabilitation vs. usual).
Acute change in self-rated dizziness (measured with the Dizziness Handicap Inventory)One week after surgeryChange in self-rated dizziness (measured with the Dizziness Handicap Inventory) from baseline to 8 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation. Comparison between both groups (preoperative rehabilitation vs. usual).
Change in self-rated dizziness (measured with the Dizziness Handicap Inventory) at short termOne month after surgeryChange in self-rated dizziness (measured with the Dizziness Handicap Inventory) from baseline to 30 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation. Comparison between both groups (preoperative rehabilitation vs. usual).
Change in self-rated dizziness (measured with the Dizziness Handicap Inventory) at middle termThree months after surgeryChange in self-rated dizziness (measured with the Dizziness Handicap Inventory) from baseline to 90 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation. Comparison between both groups (preoperative rehabilitation vs. usual).
Change in self-rated dizziness (measured with the Dizziness Handicap Inventory) at long termOne year after surgeryChange in self-rated dizziness (measured with the Dizziness Handicap Inventory) from baseline to 365 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation. Comparison between both groups (preoperative rehabilitation vs. usual).
Acute change in self-rated quality of life (measured with WHOQOL-Bref questionnaire)One week after surgeryChange in self-rated quality of life (measured with WHOQOL-Bref questionnaire) from baseline to 8 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation. Comparison between both groups (preoperative rehabilitation vs. usual).
Balance compensation at short termOne month after surgeryChange in composite equilibrium score from baseline to 30 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation and the composite equilibrium (in %) score is calculated over the six conditions of the Sensory Organization Test (Equitest, Neurocom, USA). Comparison between both groups (preoperative rehabilitation vs. usual).
Change in self-rated quality of life (measured with WHOQOL-Bref questionnaire) at middle termThree months after surgeryChange in self-rated quality of life (measured with WHOQOL-Bref questionnaire) from baseline to 90 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation. Comparison between both groups (preoperative rehabilitation vs. usual).
Change in self-rated quality of life (measured with WHOQOL-Bref questionnaire) at long termOne year after surgeryChange in self-rated quality of life (measured with WHOQOL-Bref questionnaire) from baseline to 365 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation. Comparison between both groups (preoperative rehabilitation vs. usual).
Acute change in vestibular functionOne week after surgeryChange in vestibular function (measured by means of videonystagmography) from baseline to 8 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation and videonystagmographic tests include both pendular and caloric tests. Comparison between both groups (preoperative rehabilitation vs. usual).
Change in vestibular function at short termOne month after surgeryChange in vestibular function (measured by means of videonystagmography) from baseline to 30 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation and videonystagmographic tests include both pendular and caloric tests. Comparison between both groups (preoperative rehabilitation vs. usual).
Change in vestibular function at middle termThree months after surgeryChange in vestibular function (measured by means of videonystagmography) from baseline to 90 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation and videonystagmographic tests include both pendular and caloric tests. Comparison between both groups (preoperative rehabilitation vs. usual).
Change in vestibular function at long termOne year after surgeryChange in vestibular function (measured by means of videonystagmography) from baseline to 365 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation and videonystagmographic tests include both pendular and caloric tests. Comparison between both groups (preoperative rehabilitation vs. usual).
Preoperative change in vestibular functionFrom baseline to three days before surgeryChange in vestibular function (measured by means of videonystagmography) from baseline to three days before surgery. The baseline corresponds to the day before the preoperative rehabilitation and videonystagmographic tests include both pendular and caloric tests. Comparison between both groups (preoperative rehabilitation vs. usual).
Change in self-rated quality of life (measured with WHOQOL-Bref questionnaire) at short termOne month after surgeryChange in self-rated quality of life (measured with WHOQOL-Bref questionnaire) from baseline to 30 days after surgery. The baseline corresponds to the day before the preoperative rehabilitation. Comparison between both groups (preoperative rehabilitation vs. usual).

Countries

France

Contacts

Primary ContactCécile Parietti-Winkler, MD, PhD
c.parietti@chu-nancy.fr+33 383 852 032
Backup ContactGérome Gauchard, PhD
gerome.gauchard@univ-lorraine.fr

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026