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Acta Otolaryngol ; 141(4): 340-347, 2021 Apr.
Article in English | MEDLINE | ID: mdl-33583327

ABSTRACT

LEVEL OF EVIDENCE: II-2. BACKGROUND: Vestibular schwannomas are benign tumors of the eight cranial nerve that may cause asymmetric sensorineural hearing loss (ASHL) and vestibular dysfunction. OBJECTIVE: The aim of this study was to assess the role of the video head impulse test (vHIT) and vibration-induced nystagmus (VIN) test in diagnosing vestibular schwannoma in a population of patients with Asymmetric sensorineural hearing loss. MATERIAL AND METHODS: For this prospective case-control study, 23 consecutive patients with ASHL and normal magnetic resonance were enrolled in the control group, and 33 consecutive patients with ASHL and vestibular schwannoma were enrolled in the case group. Gold standard was magnetic resonance imaging. Audiometry, vHIT, and VIN tests were performed for each patient. Significance of VIN and vHIT testing was determined by evaluation of their sensitivity, specificity, and correlation with vestibular function tests. RESULTS: Regarding the vHIT, sensitivity and specificity were 45.5% and 82.6%, respectively, for horizontal canal gain, 60.6% and 87.6%, respectively, for posterior canal gain, and 45.5% and 78.3%, respectively, when analyzing superior canal gains. Regarding the VIN test, the sensitivity and specificity were 81.8% and 73.9%, respectively, when based on the presence of a VIN with any mastoid stimulation. CONCLUSIONS: Our results suggest that using the VIN test may be an efficient approach to screen for vestibular schwannoma in patients with asymmetric sensorineural hearing loss. SIGNIFICANCE: Our results suggest that using the VIN test may be an efficient approach to screen for vestibular schwannoma in patients with ASHL.


Subject(s)
Head Impulse Test , Hearing Loss, Sensorineural/etiology , Neuroma, Acoustic/diagnosis , Nystagmus, Physiologic , Vestibular Function Tests , Audiometry , Case-Control Studies , Female , Humans , Male , Middle Aged , Neuroma, Acoustic/complications , Prospective Studies , Saccades/physiology , Sensitivity and Specificity , Vibration
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