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  4. Artifact free reconstruction with the system matrix approach by overscanning the field-free-point trajectory in magnetic particle imaging
 
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Artifact free reconstruction with the system matrix approach by overscanning the field-free-point trajectory in magnetic particle imaging

Publikationstyp
Journal Article
Date Issued
2015-12-18
Sprache
English
Author(s)
Weber, Alexander  
Werner, Franziska  
Weizenecker, Jürgen  
Buzug, Thorsten M.  
Knopp, Tobias  
Institut
Biomedizinische Bildgebung E-5  
TORE-URI
http://hdl.handle.net/11420/7202
Journal
Physics in medicine and biology  
Volume
61
Issue
2
Start Page
475
End Page
487
Citation
Physics in Medicine and Biology 2 (61): 475-487 (2015-12-18)
Publisher DOI
10.1088/0031-9155/61/2/475
Scopus ID
2-s2.0-84955513314
PubMed ID
26682648
Magnetic particle imaging is a tracer-based imaging method that utilizes the non-linear magnetization response of iron-oxide for determining their spatial distribution. The method is based on a sampling scheme where a sensitive spot is moved along a trajectory that captured a predefined field-of-view (FOV). However, particles outside the FOV also contribute to the measurement signal due to their rotation and the non-sharpness of the sensitive spot. In the present work we investigate artifacts that are induced by particles not covered by the FOV and show that the artifacts can be mitigated by using a system matrix that covers not only the region of interest but also a certain area around the FOV. The findings are especially relevant when using a multi-patch acquisition scheme where the boundaries of neighboring patches have to be handled.
Subjects
artefact removal
magnetic particle imaging
overscan
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