Correcting Susceptibility artifacts with Unified RF/Shim Coil (UNIC) in Cervical Spine MRI for Subjects with and without Orthodontic Implants
Коррекция артефактов магнитной восприимчивости с помощью объединённой RF/шима катушки (UNIC) при МРТ шейного отдела позвоночника у пациентов с ортодонтическими имплантами и без них
2024-11-26
SCID: 54.1/923xepdc
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Unified RF/shim coil (UNIC)cervical spine MRIdiffusion tensor imaging (DTI)diffusion-weighted imaging (DWI)susceptibility artifacts
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Abstract (AI)
Motivation: Metallic orthodontic devices can introduce strong susceptibility artifacts that hinder clinical interpretation of cervical spine MRI. Goal(s): Using novel unified RF/shim coils (UNIC) to reduce field variation caused by metal susceptibility artifact. Approach: Total of eighteen subjects (5 with braces) were scanned with a UNIC coil research prototype. Results: The integrated UNIC shim array significantly increased the voxel percentage from 28% with scanner-shimming to 46% in DWI, reducing distortion by 61% with braces and 15% without braces in DWI, and by 41% in DTI. It also decreased B0 field variation by 63% with braces and 31% without. Impact: Unified RF/shim coil delivered improved quality and corrected image distortions in cervical spine scans by mitigating magnetic field variation, including those from orthodontic braces, ensuring more accurate diffusion measurements and consistently reducing susceptibility artifacts.
Key Findings
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Integrated UNIC shim array increased voxel percentage usable for DWI from 28% (scanner shimming) to 46%.
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UNIC decreased B0 field variation by 63% in subjects with braces and by 31% in subjects without braces.
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UNIC reduced DTI distortion by 41%.
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UNIC reduced DWI distortion by 61% in subjects with braces and by 15% in subjects without braces.
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Unified RF/shim coil mitigates susceptibility artifacts from orthodontic metal, improving cervical spine image quality and diffusion measurement accuracy.
Research Object
Unified RF/shim coil (UNIC) used in cervical spine MRI
Research Subject
Reduction and correction of susceptibility-induced magnetic field variation and image distortions (including in DWI and DTI) caused by metallic orthodontic implants/braces, and resulting improvement in image quality and diffusion measurement accuracy
Publication Details
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2024-11-26
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