DocumentCode :
617550
Title :
Iterative denoising algorithms for perfusion C-arm CT with a rapid scanning protocol
Author :
Manhart, M.T. ; Fieselmann, A. ; Yu Deuerling-Zheng ; Kowarschik, Markus
Author_Institution :
Pattern Recognition Lab., Friedrich-Alexander-Univ. Erlangen-Nurnberg, Erlangen, Germany
fYear :
2013
fDate :
7-11 April 2013
Firstpage :
1235
Lastpage :
1239
Abstract :
Tissue perfusion measurement using C-arm angiography systems capable of CT-like imaging (C-arm CT) is a novel technique with potentially high benefit for catheter-guided treatment of stroke in the interventional suite. New rapid scanning protocols with increased C-arm rotation speed enable fast acquisitions of C-arm CT volumes and allow for sampling the contrast flow with improved temporal resolution. However, the peak contrast attenuation values of brain tissue lie typically in a range of 5-30 HU. Thus perfusion imaging is very sensitive to noise. In this work we compare different denoising algorithms based on the algebraic reconstruction technique (ART) and introduce a novel denoising technique, which requires only iterative filtering in volume space and is computationally much more attractive. Our evaluation using a realistic digital brain phantom shows that all methods improve the perfusion maps perceptibly compared to Feldkamp-type (FDK) reconstruction. The volume-based technique performs similarly to the ART-based methods: the Pearson correlation of reference and reconstructed blood flow maps increases from 0.61 for the FDK method to 0.81 for the best ART method and to 0.79 for the volume-based method. Furthermore results from a canine stroke model study are shown.
Keywords :
brain; catheters; computerised tomography; diagnostic radiography; diseases; haemorheology; image denoising; image reconstruction; iterative methods; medical image processing; phantoms; ART; C-arm angiography systems; C-arm rotation speed; CT like imaging; FDK reconstruction; Feldkamp type reconstruction; algebraic reconstruction technique; brain tissue peak contrast attenuation values; canine stroke model; catheter guided stroke treatment; contrast flow sampling; denoising algorithms; fast C-arm CT volume acquisitions; iterative denoising algorithm; iterative filtering; perfusion C-arm CT; perfusion imaging; rapid scanning protocols; realistic digital brain phantom; reconstructed blood flow maps; stroke interventional suite; temporal resolution; tissue perfusion measurement; volume based technique; Computed tomography; Image reconstruction; Noise reduction; Phantoms; Protocols; C-arm CT; Perfusion imaging; iterative reconstruction; stroke treatment;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Biomedical Imaging (ISBI), 2013 IEEE 10th International Symposium on
Conference_Location :
San Francisco, CA
ISSN :
1945-7928
Print_ISBN :
978-1-4673-6456-0
Type :
conf
DOI :
10.1109/ISBI.2013.6556704
Filename :
6556704
Link To Document :
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