Pathophysiological analysis of idiopathic sudden sensorineural hearing loss by magnetic resonance imaging: A mini scoping review

Author:

Sone Michihiko,Kobayashi Masumi,Yoshida Tadao,Naganawa Shinji

Abstract

ObjectiveTo summarize the pathophysiological analysis of idiopathic sudden sensorineural hearing loss (ISSNHL) by magnetic resonance imaging (MRI), focusing on the findings of high signal or endolymphatic hydrops (EH) in the inner ear.MethodsWe summarize the published studies of our research group regarding the pathophysiological analysis of ISSNHL on MRI and review related clinical articles that have reported significantly high signal or the existence of EH in ears with ISSNHL.ResultsPre-contrast high signal on MRI may indicate minor hemorrhage or increased permeability of surrounding vessels to the perilymph, whereas post-contrast high signal indicates breakdown of the blood–labyrinth barrier, in which irreversible changes would lead to poor prognosis. In some cases of ISSNHL, primary EH could be pre-existing and may be a risk factor for the onset of ISSNHL.ConclusionAnalysis of ISSNHL by cutting-edge MRI evaluation could provide useful information for elucidating its pathophysiology and for predicting prognosis in this disease.

Publisher

Frontiers Media SA

Subject

Neurology (clinical),Neurology

Reference37 articles.

1. Clinical practice guideline: sudden hearing loss (update);Chandrasekhar;Otolaryngol Head Neck Surg,2019

2. Labyrinthine enhancement on gadolinium-enhanced magnetic resonance imaging in sudden deafness and vertigo: correlation with audiologic and electronystagmographic studies;Mark;Ann Otol Rhinol Laryngol,1992

3. Segmental enhancement of the cochlea on contrast-enhanced MR: correlation with the frequency of hearing loss and possible sign of perilympatic fistula and autoimmune labyrinthitis;Mark;Am J Neuroradiol,1993

4. Comparison of flow artifacts between 2D-FLAIR and 3D-FLAIR sequences at 3 T;Naganawa;Eur Radiol,2004

5. Three-dimensional fluid-attenuated inversion recovery magnetic resonance imaging findings in patients with sudden sensorineural hearing loss;Sugiura;Laryngoscope,2006

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