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Motion Correction In Thoracic Positron Emission Tomography 1st Edition Fabian Gigengack

  • SKU: BELL-4931658
Motion Correction In Thoracic Positron Emission Tomography 1st Edition Fabian Gigengack
$ 31.00 $ 45.00 (-31%)

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Motion Correction In Thoracic Positron Emission Tomography 1st Edition Fabian Gigengack instant download after payment.

Publisher: Springer International Publishing
File Extension: PDF
File size: 2.81 MB
Pages: 88
Author: Fabian Gigengack, Xiaoyi Jiang, Mohammad Dawood, Klaus P. Schäfers (auth.)
ISBN: 9783319083919, 9783319083926, 3319083910, 3319083929
Language: English
Year: 2015
Edition: 1

Product desciption

Motion Correction In Thoracic Positron Emission Tomography 1st Edition Fabian Gigengack by Fabian Gigengack, Xiaoyi Jiang, Mohammad Dawood, Klaus P. Schäfers (auth.) 9783319083919, 9783319083926, 3319083910, 3319083929 instant download after payment.

Respiratory and cardiac motion leads to image degradation in Positron Emission Tomography (PET), which impairs quantification. In this book, the authors present approaches to motion estimation and motion correction in thoracic PET. The approaches for motion estimation are based on dual gating and mass-preserving image registration (VAMPIRE) and mass-preserving optical flow (MPOF). With mass-preservation, image intensity modulations caused by highly non-rigid cardiac motion are accounted for. Within the image registration framework different data terms, different variants of regularization and parametric and non-parametric motion models are examined. Within the optical flow framework, different data terms and further non-quadratic penalization are also discussed. The approaches for motion correction particularly focus on pipelines in dual gated PET. A quantitative evaluation of the proposed approaches is performed on software phantom data with accompanied ground-truth motion information. Further, clinical applicability is shown on patient data. The book concludes with an outlook of recent developments and potential future advances in the field of PET motion correction.

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