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MR-based PET motion correction procedure for simultaneous MR-PET neuroimaging of human brain.


ABSTRACT: Positron Emission Tomography (PET) images are prone to motion artefacts due to the long acquisition time of PET measurements. Recently, simultaneous magnetic resonance imaging (MRI) and PET have become available in the first generation of Hybrid MR-PET scanners. In this work, the elimination of artefacts due to head motion in PET neuroimages is achieved by a new approach utilising MR-based motion tracking in combination with PET list mode data motion correction for simultaneous MR-PET acquisitions. The method comprises accurate MR-based motion measurements, an intra-frame motion minimising and reconstruction time reducing temporal framing algorithm, and a list mode based PET reconstruction which utilises the Ordinary Poisson Algorithm and avoids axial and transaxial compression. Compared to images uncorrected for motion, an increased image quality is shown in phantom as well as in vivo images. In vivo motion corrected images show an evident increase of contrast at the basal ganglia and a good visibility of uptake in tiny structures such as superior colliculi.

SUBMITTER: Ullisch MG 

PROVIDER: S-EPMC3495949 | biostudies-literature | 2012

REPOSITORIES: biostudies-literature

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MR-based PET motion correction procedure for simultaneous MR-PET neuroimaging of human brain.

Ullisch Marcus Görge MG   Scheins Jürgen Johann JJ   Weirich Christoph C   Rota Kops Elena E   Celik Abdullah A   Tellmann Lutz L   Stöcker Tony T   Herzog Hans H   Shah Nadim Jon NJ  

PloS one 20121112 11


Positron Emission Tomography (PET) images are prone to motion artefacts due to the long acquisition time of PET measurements. Recently, simultaneous magnetic resonance imaging (MRI) and PET have become available in the first generation of Hybrid MR-PET scanners. In this work, the elimination of artefacts due to head motion in PET neuroimages is achieved by a new approach utilising MR-based motion tracking in combination with PET list mode data motion correction for simultaneous MR-PET acquisitio  ...[more]

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