Article ID Journal Published Year Pages File Type
5726964 Journal of Neuroradiology 2017 6 Pages PDF
Abstract

•Ossicular joint luxations tightly correlate with conductive hearing loss.•The role of radiologists is crucial in detecting these lesions.•3D-CT contributes towards identifying of the traumatically injured ossicles.

PurposeAfter a trauma, the conductive ossicular chain may be disrupted by ossicular luxation or fracture. Recent developments in 3D-CT allow a better understanding of ossicular injuries. In this retrospective study, we compared patients with post-traumatic conductive hearing loss (CHL) with those referred without CHL to evaluate the relationship between ossicular injuries and CHL. We also assessed the added value of 3D reconstructions on 2D-CT scan to detect ossicular lesions in patients surgically managed.MethodsThe CT scans were performed using a 40-section spiral CT scanner in 49 patients with post-traumatic CHL (n = 29) and without CHL (n = 20). Three radiologists performed independent blind evaluations of 2D-CT and 3D reconstructions to detect ossicular chain injury. We used the t-test to explore differences regarding the number of subjects with ossicular injury in the two groups. We also estimated the diagnostic accuracy and the inter-rater agreement of the 3D-CT reconstructions associated to 2D-CT scan.ResultsWe identified ossicular abnormality in 14 patients out of 29 and in one patient out of 20 in the CHL and non-CHL groups respectively. There was a significant difference regarding the number of subjects with ossicular lesions between the two groups (P ≤ 0.01). The diagnostic sensitivity of 3D-CT reconstructions associated with 2D-CT ranged from 66% to 100% and the inter-reader agreement ranged from 0.85 to 1, depending of the type of lesion.ConclusionThe relationship between ossicular lesion and the presence of CHL tightly correlated. 3D-CT reconstructions of the temporal bone are useful to assess patients in a post-traumatic context.

Related Topics
Health Sciences Medicine and Dentistry Radiology and Imaging
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