MRI Metal Artifact Reduction Sequence for Auditory Implants: First Results with a Transcutaneous Bone Conduction Implant

Последовательность МРТ для уменьшения металлических артефактов у пациентов со слуховыми имплантами: первые результаты при использовании чрескожного импланта костной проводимости
Lukas Anschuetz, Wilhelm Wimmer, Arsany Hakim, Claus Kiefer, Manuela Pastore‐Wapp, Marco Caversaccio, Franca Wagner
2019-01-01

1.5 T MRICohen's kappaSEMAC-VAT WARPmetal artifact reductiontranscutaneous bone conduction implant
OBJECTIVE: Magnetic resonance imaging (MRI) is often limited in patients with auditory implants because of the presence of metallic components and magnets. The aim of this study was to evaluate the clinical usefulness of a customized MRI sequence for metal artifact suppression for patients with implants in the temporal bone region, specifically patients with a transcutaneous bone conduction implant. METHODS: Two whole head specimens were unilaterally implanted with a transcutaneous bone conduction implant. MRI examinations with and without a primarily self-build sequence (SEMAC-VAT WARP) for metal artifact suppression were performed. The diagnostic usefulness of the acquired MRI scans was rated independently by two neuroradiologists. The sequence was also used to acquire postimplantation follow-up MRI in a patient with a transcutaneous bone conduction implant. RESULTS: The customized SEMAC-VAT WARP sequence significantly improved the diagnostic usefulness of the postimplantation MRIs. The image acquisition time was 12 min and 20 s for the T1-weighted and 12 min and 12 s for the T2-weighted MRI. There was good agreement between the two blinded raters (Cohen's κ = 0.61, p < 0.001). CONCLUSION: The sequence for metal artifact reduction optimized in Bern enables MRI at 1.5 T in patients with active transcutaneous bone conduction implants without sacrificing diagnostic imaging quality. Particularly on the implanted side, imaging of intracranial and supra- and infratentorial brain pathologies is clinically more valuable than standard diagnostic MRI without any artifact reduction sequences.
1
A customized SEMAC-VAT WARP MRI sequence significantly improved the diagnostic usefulness of scans after transcutaneous bone conduction implant placement.
2
MRI acquisition required 12 minutes 20 seconds for T1-weighted imaging and 12 minutes 12 seconds for T2-weighted imaging.
3
The optimized sequence enabled 1.5-T MRI in patients with active transcutaneous bone conduction implants without sacrificing diagnostic image quality.
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The sequence provided clinically valuable visualization of intracranial, supratentorial, and infratentorial brain pathology, especially on the implanted side.
5
Two blinded neuroradiologists showed good agreement in diagnostic ratings (Cohen’s κ = 0.61, p < 0.001).

MRI metal artifact reduction sequence optimized for 1.5 T imaging in patients with active transcutaneous bone conduction implants

the diagnostic usefulness and artifact-suppression performance of a customized SEMAC-VAT WARP MRI sequence for postimplantation brain imaging

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2019-01-01
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Lukas Anschuetz
Wilhelm Wimmer
Arsany Hakim
Claus Kiefer
Manuela Pastore‐Wapp
Marco Caversaccio
Franca Wagner
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