Literature DB >> 23927351

Use of measured scatter data for the attenuation correction of single photon emission tomography without transmission scanning.

Sarah C Cade1, Simon Arridge, Martyn J Evans, Brian F Hutton.   

Abstract

PURPOSE: Attenuation correction is essential for reliable interpretation of emission tomography, however, the use of transmission measurements to generate attenuation maps is limited by availability of equipment and potential mismatches between the transmission and emission measurements. The authors present a first step toward a method of estimating an attenuation map from measured scatter data without a transmission scan.
METHODS: A scatter model has been developed that accurately predicts the distribution of photons which have been scattered once. The scatter model has been used as the basis of a maximum likelihood gradient ascent method to estimate an attenuation map from measured scatter data. In order to estimate both the attenuation map and activity distribution, iterations of the derived scatter based algorithm have been alternated with the maximum likelihood expectation maximization algorithm in a joint estimation process. For each iteration of the attenuation map estimation, the activity distribution is fixed at the values estimated during the previous activity iteration, and in each iteration of the activity distribution estimation the attenuation map is fixed at the values estimated during the previous attenuation iteration. The use of photopeak data to enhance the estimation of the attenuation map compared to the use of scatter data alone has also been considered. The algorithm derived has been used to reconstruct data simulated for an idealized two-dimensional situation and using a physical phantom.
RESULTS: The reconstruction of idealized data demonstrated good reconstruction of both the activity distribution and attenuation map. The inclusion of information recorded in the photopeak energy window in the attenuation map estimation step demonstrated an improvement in the accuracy of the reconstruction, enabling an accurate attenuation map to be recovered. Validation of the results with physical phantom data demonstrated that different regions of attenuation could be distinguished in a real situation and produces results that represent a promising first step toward the use of scatter data to estimate the activity distribution and attenuation map from single photon emission tomography (SPECT) data without a transmission scan.
CONCLUSIONS: The technique presented shows promise as a method of attenuation correction for SPECT data without the need for a separate transmission scan. Further work is required to further improve the method and to compensate for the assumptions used in the scatter model.

Mesh:

Year:  2013        PMID: 23927351     DOI: 10.1118/1.4812686

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  11 in total

1.  Image Science with Photon-Processing Detectors.

Authors:  Luca Caucci; Abhinav K Jha; Lars R Furenlid; Eric W Clarkson; Matthew A Kupinski; Harrison H Barrett
Journal:  IEEE Nucl Sci Symp Conf Rec (1997)       Date:  2013 Oct-Nov

2.  Attenuation correction in emission tomography using the emission data--A review.

Authors:  Yannick Berker; Yusheng Li
Journal:  Med Phys       Date:  2016-02       Impact factor: 4.071

3.  Direct Image-Based Attenuation Correction using Conditional Generative Adversarial Network for SPECT Myocardial Perfusion Imaging.

Authors:  Mahsa Torkaman; Jaewon Yang; Luyao Shi; Rui Wang; Edward J Miller; Albert J Sinusas; Chi Liu; Grant T Gullberg; Youngho Seo
Journal:  Proc SPIE Int Soc Opt Eng       Date:  2021-02-15

Review 4.  The origins of SPECT and SPECT/CT.

Authors:  Brian F Hutton
Journal:  Eur J Nucl Med Mol Imaging       Date:  2013-11-12       Impact factor: 9.236

5.  Fisher information analysis of list-mode SPECT emission data for joint estimation of activity and attenuation distribution.

Authors:  Ashequr Rahman; Yansong Zhu; Eric Clarkson; Matthew A Kupinski; Eric C Frey; Abhinav K Jha
Journal:  Inverse Probl       Date:  2020-08-20       Impact factor: 2.407

6.  A physics and learning-based transmission-less attenuation compensation method for SPECT.

Authors:  Zitong Yu; Md Ashequr Rahman; Thomas Schindler; Richard Laforest; Abhinav K Jha
Journal:  Proc SPIE Int Soc Opt Eng       Date:  2021-02-15

7.  Numerical algorithms for scatter-to-attenuation reconstruction in PET: empirical comparison of convergence, acceleration, and the effect of subsets.

Authors:  Yannick Berker; Joel S Karp; Volkmar Schulz
Journal:  IEEE Trans Radiat Plasma Med Sci       Date:  2017-06-08

8.  Task-based assessment of binned and list-mode SPECT systems.

Authors:  Md Ashequr Rahman; Abhinav K Jha
Journal:  Proc SPIE Int Soc Opt Eng       Date:  2021-02-15

9.  Direct Attenuation Correction Using Deep Learning for Cardiac SPECT: A Feasibility Study.

Authors:  Jaewon Yang; Luyao Shi; Rui Wang; Edward J Miller; Albert J Sinusas; Chi Liu; Grant T Gullberg; Youngho Seo
Journal:  J Nucl Med       Date:  2021-02-26       Impact factor: 11.082

Review 10.  PET/MRI attenuation estimation in the lung: A review of past, present, and potential techniques.

Authors:  Joseph Lillington; Ludovica Brusaferri; Kerstin Kläser; Karin Shmueli; Radhouene Neji; Brian F Hutton; Francesco Fraioli; Simon Arridge; Manuel Jorge Cardoso; Sebastien Ourselin; Kris Thielemans; David Atkinson
Journal:  Med Phys       Date:  2020-01-01       Impact factor: 4.071

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