Quantitative evaluation of metal artifact reduction techniques in MRI

Several techniques for metal artifact reduction in MRI were studied in order to determine their effectiveness. The noise and blur introduced by the techniques were also investigated. To this end, non-metallic replicas of two metal implants (stainless steel and titanium/chromium-cobalt femoral prosth...

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Main Author: Kolind, Shannon Heather
Language:English
Published: 2009
Online Access:http://hdl.handle.net/2429/14574
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-BVAU.2429-145742014-03-14T15:47:38Z Quantitative evaluation of metal artifact reduction techniques in MRI Kolind, Shannon Heather Several techniques for metal artifact reduction in MRI were studied in order to determine their effectiveness. The noise and blur introduced by the techniques were also investigated. To this end, non-metallic replicas of two metal implants (stainless steel and titanium/chromium-cobalt femoral prostheses) were fabricated from wax, and MR images were obtained of each component immersed in water. The difference between the images of each metal prosthesis and its wax replica was measured in terms of energy. The difference energy attributed to noise and blur were isolated, resulting in a measure of the metal artifact. This new "gold standard" method was successfully demonstrated to provide a quantitative means of measuring metal artifact. Several pulse sequences were evaluated in terms of metal artifact reduction capability, as well as signal-to-noise ratio and blur. The analysis revealed that increasing the image bandwidth from ±16 kHz to ±64 kHz reduced metal artifact by an average of 60%, while employing View Angle Tilting (VAT) was only slightly more efficient, reducing metal artifact by an average of 63%. The metal artifact reduction sequence (MARS), which combines the increased image bandwidth with VAT as well as an increased slice-select bandwidth, resulted in the least amount of image distortion, reducing the artifact by an average of 79%. The signal-to-noise ratio was lower for MARS, but blurring was found to be significantly improved. 2009-11-02T21:10:50Z 2009-11-02T21:10:50Z 2003 2009-11-02T21:10:50Z 2003-11 Electronic Thesis or Dissertation http://hdl.handle.net/2429/14574 eng UBC Retrospective Theses Digitization Project [http://www.library.ubc.ca/archives/retro_theses/]
collection NDLTD
language English
sources NDLTD
description Several techniques for metal artifact reduction in MRI were studied in order to determine their effectiveness. The noise and blur introduced by the techniques were also investigated. To this end, non-metallic replicas of two metal implants (stainless steel and titanium/chromium-cobalt femoral prostheses) were fabricated from wax, and MR images were obtained of each component immersed in water. The difference between the images of each metal prosthesis and its wax replica was measured in terms of energy. The difference energy attributed to noise and blur were isolated, resulting in a measure of the metal artifact. This new "gold standard" method was successfully demonstrated to provide a quantitative means of measuring metal artifact. Several pulse sequences were evaluated in terms of metal artifact reduction capability, as well as signal-to-noise ratio and blur. The analysis revealed that increasing the image bandwidth from ±16 kHz to ±64 kHz reduced metal artifact by an average of 60%, while employing View Angle Tilting (VAT) was only slightly more efficient, reducing metal artifact by an average of 63%. The metal artifact reduction sequence (MARS), which combines the increased image bandwidth with VAT as well as an increased slice-select bandwidth, resulted in the least amount of image distortion, reducing the artifact by an average of 79%. The signal-to-noise ratio was lower for MARS, but blurring was found to be significantly improved.
author Kolind, Shannon Heather
spellingShingle Kolind, Shannon Heather
Quantitative evaluation of metal artifact reduction techniques in MRI
author_facet Kolind, Shannon Heather
author_sort Kolind, Shannon Heather
title Quantitative evaluation of metal artifact reduction techniques in MRI
title_short Quantitative evaluation of metal artifact reduction techniques in MRI
title_full Quantitative evaluation of metal artifact reduction techniques in MRI
title_fullStr Quantitative evaluation of metal artifact reduction techniques in MRI
title_full_unstemmed Quantitative evaluation of metal artifact reduction techniques in MRI
title_sort quantitative evaluation of metal artifact reduction techniques in mri
publishDate 2009
url http://hdl.handle.net/2429/14574
work_keys_str_mv AT kolindshannonheather quantitativeevaluationofmetalartifactreductiontechniquesinmri
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