Metal-Induced Artifacts in MRI

Garry E. Gold, John M. Pauly, Brian A. Hargreaves, Pauline W. Worters, Kim Butts Pauly, Kevin M. Koch, Kim Butts Pauly
2011-08-23

MRI artifactsfat suppression failuregeometric distortionmetallic implantssignal loss
OBJECTIVE: The purpose of this article is to review some of the basic principles of imaging and how metal-induced susceptibility artifacts originate in MR images. We will describe common ways to reduce or modify artifacts using readily available imaging techniques, and we will discuss some advanced methods to correct readout-direction and slice-direction artifacts. CONCLUSION: The presence of metallic implants in MRI can cause substantial image artifacts, including signal loss, failure of fat suppression, geometric distortion, and bright pile-up artifacts. These cause large resonant frequency changes and failure of many MRI mechanisms. Careful parameter and pulse sequence selections can avoid or reduce artifacts, although more advanced imaging methods offer further imaging improvements.
1
Advanced imaging methods provide further improvements beyond parameter and sequence optimization for imaging near metal.
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Careful selection of imaging parameters and pulse sequences can avoid or reduce metal-related artifacts.
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Metal-induced artifacts cause large resonant frequency changes that lead to failure of many MRI mechanisms.
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Metallic implants in MRI produce substantial image artifacts including signal loss, failure of fat suppression, geometric distortion, and bright pile-up artifacts.

Metallic implants in MRI examinations

Imaging artifacts caused by metallic implants (signal loss, fat-suppression failure, geometric distortion, bright pile-up) and their mitigation via parameter and pulse-sequence selection and advanced imaging methods

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Publication Date
2011-08-23
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Authors
Garry E. Gold
John M. Pauly
Brian A. Hargreaves
Pauline W. Worters
Kim Butts Pauly
Kevin M. Koch
Kim Butts Pauly
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