Literature DB >> 19487044

Motion correction based on an appropriate system matrix for statistical reconstruction of respiratory-correlated PET acquisitions.

Loïc Fin1, Pascal Bailly, Joël Daouk, Marc-Etienne Meyer.   

Abstract

Respiratory motion correction in positron emission tomography (PET) seeks to incorporate motion information into an image reconstruction algorithm by using the full counting statistics of an acquisition to generate a single, motion-free volume. Here, we present a motion-incorporated ordered subsets expectation maximization (MOSEM) reconstruction based on a device-dedicated tomographic projector in which each matrix element is calculated directly from the voxels' Cartesian coordinates alone. The motion is corrected by updating this projector as a function of the respiratory level. The performance of the reconstruction method was investigated with three datasets: two simulations of a transaxially or axially moving lesion on a patient acquisition and a third acquisition of a moving sphere. After the 16th sub-iteration, the normalized mean square error (NMSE, with a motionless acquisition as reference) was 0.20 for the non-corrected (ungated) image and 0.01 for the MOSEM image with transaxial motion simulation. Likewise, NMSE was 0.30 for the ungated image and 0.03 for MOSEM image with axial motion simulation. For the phantom, ungated reconstruction yielded an error of 0.78, whereas MOSEM yielded 0.43. The error reduction resulted from enhancement and reduced spreading of the moving uptake. Our results show that MOSEM reconstruction yields motion-corrected images which are similar to motionless reference images.

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Year:  2009        PMID: 19487044     DOI: 10.1016/j.cmpb.2009.05.001

Source DB:  PubMed          Journal:  Comput Methods Programs Biomed        ISSN: 0169-2607            Impact factor:   5.428


  2 in total

Review 1.  Management of respiratory motion in PET/computed tomography: the state of the art.

Authors:  Audrey Pépin; Joël Daouk; Pascal Bailly; Sébastien Hapdey; Marc-Etienne Meyer
Journal:  Nucl Med Commun       Date:  2014-02       Impact factor: 1.690

2.  Simulation Study of a Frame-Based Motion Correction Algorithm for Positron Emission Imaging.

Authors:  Héctor Espinós-Morató; David Cascales-Picó; Marina Vergara; Ángel Hernández-Martínez; José María Benlloch Baviera; María José Rodríguez-Álvarez
Journal:  Sensors (Basel)       Date:  2021-04-08       Impact factor: 3.576

  2 in total

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