Literature DB >> 27280456

Rapid processing of PET list-mode data for efficient uncertainty estimation and data analysis.

P J Markiewicz1, K Thielemans, J M Schott, D Atkinson, S R Arridge, B F Hutton, S Ourselin.   

Abstract

In this technical note we propose a rapid and scalable software solution for the processing of PET list-mode data, which allows the efficient integration of list mode data processing into the workflow of image reconstruction and analysis. All processing is performed on the graphics processing unit (GPU), making use of streamed and concurrent kernel execution together with data transfers between disk and CPU memory as well as CPU and GPU memory. This approach leads to fast generation of multiple bootstrap realisations, and when combined with fast image reconstruction and analysis, it enables assessment of uncertainties of any image statistic and of any component of the image generation process (e.g. random correction, image processing) within reasonable time frames (e.g. within five minutes per realisation). This is of particular value when handling complex chains of image generation and processing. The software outputs the following: (1) estimate of expected random event data for noise reduction; (2) dynamic prompt and random sinograms of span-1 and span-11 and (3) variance estimates based on multiple bootstrap realisations of (1) and (2) assuming reasonable count levels for acceptable accuracy. In addition, the software produces statistics and visualisations for immediate quality control and crude motion detection, such as: (1) count rate curves; (2) centre of mass plots of the radiodistribution for motion detection; (3) video of dynamic projection views for fast visual list-mode skimming and inspection; (4) full normalisation factor sinograms. To demonstrate the software, we present an example of the above processing for fast uncertainty estimation of regional SUVR (standard uptake value ratio) calculation for a single PET scan of (18)F-florbetapir using the Siemens Biograph mMR scanner.

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Year:  2016        PMID: 27280456     DOI: 10.1088/0031-9155/61/13/N322

Source DB:  PubMed          Journal:  Phys Med Biol        ISSN: 0031-9155            Impact factor:   3.609


  6 in total

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Authors:  Junghun Cho; John Lee; Hongyu An; Manu S Goyal; Yi Su; Yi Wang
Journal:  J Cereb Blood Flow Metab       Date:  2020-11-27       Impact factor: 6.200

2.  Micro-Networks for Robust MR-Guided Low Count PET Imaging.

Authors:  Casper O da Costa-Luis; Andrew J Reader
Journal:  IEEE Trans Radiat Plasma Med Sci       Date:  2020-04-08

3.  Uncertainty analysis of MR-PET image registration for precision neuro-PET imaging.

Authors:  Pawel J Markiewicz; Julian C Matthews; John Ashburner; David M Cash; David L Thomas; Enrico De Vita; Anna Barnes; M Jorge Cardoso; Marc Modat; Richard Brown; Kris Thielemans; Casper da Costa-Luis; Isadora Lopes Alves; Juan Domingo Gispert; Mark E Schmidt; Paul Marsden; Alexander Hammers; Sebastien Ourselin; Frederik Barkhof
Journal:  Neuroimage       Date:  2021-02-12       Impact factor: 6.556

4.  Data-Driven Motion Detection and Event-by-Event Correction for Brain PET: Comparison with Vicra.

Authors:  Yihuan Lu; Mika Naganawa; Takuya Toyonaga; Jean-Dominique Gallezot; Kathryn Fontaine; Silin Ren; Enette Mae Revilla; Tim Mulnix; Richard E Carson
Journal:  J Nucl Med       Date:  2020-01-31       Impact factor: 11.082

5.  NiftyPET: a High-throughput Software Platform for High Quantitative Accuracy and Precision PET Imaging and Analysis.

Authors:  Pawel J Markiewicz; Matthias J Ehrhardt; Kjell Erlandsson; Philip J Noonan; Anna Barnes; Jonathan M Schott; David Atkinson; Simon R Arridge; Brian F Hutton; Sebastien Ourselin
Journal:  Neuroinformatics       Date:  2018-01

6.  Advanced quantitative evaluation of PET systems using the ACR phantom and NiftyPET software.

Authors:  Pawel J Markiewicz; Casper da Costa-Luis; J Dickson; A Barnes; G Krokos; J MacKewn; T Clark; C Wimberley; G MacNaught; M M Yaqub; J D Gispert; B F Hutton; P Marsden; A Hammers; A J Reader; S Ourselin; K Herholz; J C Matthews; F Barkhof
Journal:  Med Phys       Date:  2022-03-31       Impact factor: 4.506

  6 in total

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