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Research ArticleHead & Neck
Open Access

Visualization of Human Inner Ear Anatomy with High-Resolution MR Imaging at 7T: Initial Clinical Assessment

M.A. van der Jagt, W.M. Brink, M.J. Versluis, S.C.A. Steens, J.J. Briaire, A.G. Webb, J.H.M. Frijns and B.M. Verbist
American Journal of Neuroradiology February 2015, 36 (2) 378-383; DOI: https://doi.org/10.3174/ajnr.A4084
M.A. van der Jagt
aFrom the Departments of Otorhinolaryngology (M.A.v.d.J., J.J.B., J.H.M.F.)
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W.M. Brink
bRadiology (W.M.B., M.J.V., A.G.W., B.M.V.)
cC.J. Gorter Center for High-Field MRI (W.M.B., M.J.V., A.G.W.)
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M.J. Versluis
bRadiology (W.M.B., M.J.V., A.G.W., B.M.V.)
cC.J. Gorter Center for High-Field MRI (W.M.B., M.J.V., A.G.W.)
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S.C.A. Steens
eDepartment of Radiology (S.C.A.S., B.M.V.), Radboud University Medical Center, Nijmegen, the Netherlands.
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J.J. Briaire
aFrom the Departments of Otorhinolaryngology (M.A.v.d.J., J.J.B., J.H.M.F.)
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A.G. Webb
bRadiology (W.M.B., M.J.V., A.G.W., B.M.V.)
cC.J. Gorter Center for High-Field MRI (W.M.B., M.J.V., A.G.W.)
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J.H.M. Frijns
aFrom the Departments of Otorhinolaryngology (M.A.v.d.J., J.J.B., J.H.M.F.)
dLeiden Institute for Brain and Cognition (J.H.M.F.), Leiden University Medical Center, Leiden, the Netherlands
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B.M. Verbist
bRadiology (W.M.B., M.J.V., A.G.W., B.M.V.)
eDepartment of Radiology (S.C.A.S., B.M.V.), Radboud University Medical Center, Nijmegen, the Netherlands.
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Abstract

BACKGROUND AND PURPOSE: In many centers, MR imaging of the inner ear and auditory pathway performed on 1.5T or 3T systems is part of the preoperative work-up of cochlear implants. We investigated the applicability of clinical inner ear MR imaging at 7T and compared the visibility of inner ear structures and nerves within the internal auditory canal with images acquired at 3T.

MATERIALS AND METHODS: Thirteen patients with sensorineural hearing loss eligible for cochlear implantation underwent examinations on 3T and 7T scanners. Two experienced head and neck radiologists evaluated the 52 inner ear datasets. Twenty-four anatomic structures of the inner ear and 1 overall score for image quality were assessed by using a 4-point grading scale for the degree of visibility.

RESULTS: The visibility of 11 of the 24 anatomic structures was rated higher on the 7T images. There was no significant difference in the visibility of 13 anatomic structures and the overall quality rating. A higher incidence of artifacts was observed in the 7T images.

CONCLUSIONS: The gain in SNR at 7T yielded a more detailed visualization of many anatomic structures, especially delicate ones, despite the challenges accompanying MR imaging at a high magnetic field.

ABBREVIATION:

SNHL
sensorineural hearing loss
  • © 2015 by American Journal of Neuroradiology

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American Journal of Neuroradiology: 36 (2)
American Journal of Neuroradiology
Vol. 36, Issue 2
1 Feb 2015
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M.A. van der Jagt, W.M. Brink, M.J. Versluis, S.C.A. Steens, J.J. Briaire, A.G. Webb, J.H.M. Frijns, B.M. Verbist
Visualization of Human Inner Ear Anatomy with High-Resolution MR Imaging at 7T: Initial Clinical Assessment
American Journal of Neuroradiology Feb 2015, 36 (2) 378-383; DOI: 10.3174/ajnr.A4084

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Visualization of Human Inner Ear Anatomy with High-Resolution MR Imaging at 7T: Initial Clinical Assessment
M.A. van der Jagt, W.M. Brink, M.J. Versluis, S.C.A. Steens, J.J. Briaire, A.G. Webb, J.H.M. Frijns, B.M. Verbist
American Journal of Neuroradiology Feb 2015, 36 (2) 378-383; DOI: 10.3174/ajnr.A4084
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