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Generalized MRI Artifact Reduction Using Array Processing Method
Case ID:
TAB-497
Web Published:
12/6/2022
Description:
The invention is a phased array combining method for reducing artifacts in Magnetic Resonance (MR) imaging. The method uses a constrained optimization that optimizes signal-to-noise subject to the constraint of nulling ghost artifacts at known locations. The method is effective in reducing or canceling artifacts that arise in a wide variety of MR applications, including ghost artifacts from echo planar imaging and Gradient Recalled Echo with Echo Train (FGRE-ET) imaging used in cardiac or other rapid imaging applications. The strategy of using phase encode acquisition orders with distortion that results in ghosts, followed by applying this phased array ghost cancellation method has a number of benefits, including reduced blur and geometric distortion, reduced acquisition time (eliminating echo shifting), and reduced sensitivity to flow.
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Direct Link:
https://nih.technologypublisher.com/tech/Generalized_MRI_Artifact_Reduction_U sing_Array_Processing_Method
Category(s):
Licensing
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For Information, Contact:
Brian Bailey
Technology Development Specialist
NIH Technology Transfer
301-594-4094
bbailey@mail.nih.gov
Inventors:
Peter Kellman
Elliot Mcveigh
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