Matches in SemOpenAlex for { <https://semopenalex.org/work/W2129804985> ?p ?o ?g. }
- W2129804985 endingPage "1830" @default.
- W2129804985 startingPage "1825" @default.
- W2129804985 abstract "We present an approach for head MR-based attenuation correction (AC) based on the Statistical Parametric Mapping 8 (SPM8) software, which combines segmentation- and atlas-based features to provide a robust technique to generate attenuation maps (μ maps) from MR data in integrated PET/MR scanners. <b>Methods:</b> Coregistered anatomic MR and CT images of 15 glioblastoma subjects were used to generate the templates. The MR images from these subjects were first segmented into 6 tissue classes (gray matter, white matter, cerebrospinal fluid, bone, soft tissue, and air), which were then nonrigidly coregistered using a diffeomorphic approach. A similar procedure was used to coregister the anatomic MR data for a new subject to the template. Finally, the CT-like images obtained by applying the inverse transformations were converted to linear attenuation coefficients to be used for AC of PET data. The method was validated on 16 new subjects with brain tumors (<i>n</i> = 12) or mild cognitive impairment (<i>n</i> = 4) who underwent CT and PET/MR scans. The μ maps and corresponding reconstructed PET images were compared with those obtained using the gold standard CT-based approach and the Dixon-based method available on the Biograph mMR scanner. Relative change (RC) images were generated in each case, and voxel- and region-of-interest–based analyses were performed. <b>Results:</b> The leave-one-out cross-validation analysis of the data from the 15 atlas-generation subjects showed small errors in brain linear attenuation coefficients (RC, 1.38% ± 4.52%) compared with the gold standard. Similar results (RC, 1.86% ± 4.06%) were obtained from the analysis of the atlas-validation datasets. The voxel- and region-of-interest–based analysis of the corresponding reconstructed PET images revealed quantification errors of 3.87% ± 5.0% and 2.74% ± 2.28%, respectively. The Dixon-based method performed substantially worse (the mean RC values were 13.0% ± 10.25% and 9.38% ± 4.97%, respectively). Areas closer to the skull showed the largest improvement. <b>Conclusion:</b> We have presented an SPM8-based approach for deriving the head μ map from MR data to be used for PET AC in integrated PET/MR scanners. Its implementation is straightforward and requires only the morphologic data acquired with a single MR sequence. The method is accurate and robust, combining the strengths of both segmentation- and atlas-based approaches while minimizing their drawbacks." @default.
- W2129804985 created "2016-06-24" @default.
- W2129804985 creator A5022933070 @default.
- W2129804985 creator A5033672920 @default.
- W2129804985 creator A5038025408 @default.
- W2129804985 creator A5038252449 @default.
- W2129804985 creator A5053723979 @default.
- W2129804985 creator A5065759765 @default.
- W2129804985 creator A5068757126 @default.
- W2129804985 creator A5084807683 @default.
- W2129804985 creator A5091239458 @default.
- W2129804985 date "2014-10-02" @default.
- W2129804985 modified "2023-10-18" @default.
- W2129804985 title "An SPM8-Based Approach for Attenuation Correction Combining Segmentation and Nonrigid Template Formation: Application to Simultaneous PET/MR Brain Imaging" @default.
- W2129804985 cites W1969043496 @default.
- W2129804985 cites W1984473052 @default.
- W2129804985 cites W2002129123 @default.
- W2129804985 cites W2027981446 @default.
- W2129804985 cites W2028309234 @default.
- W2129804985 cites W2035397698 @default.
- W2129804985 cites W2037425560 @default.
- W2129804985 cites W2043626403 @default.
- W2129804985 cites W2046798739 @default.
- W2129804985 cites W2047151644 @default.
- W2129804985 cites W2056319163 @default.
- W2129804985 cites W2057770669 @default.
- W2129804985 cites W2064276185 @default.
- W2129804985 cites W2069090100 @default.
- W2129804985 cites W2069988023 @default.
- W2129804985 cites W2083586222 @default.
- W2129804985 cites W2100495482 @default.
- W2129804985 cites W2102099319 @default.
- W2129804985 cites W2110338249 @default.
- W2129804985 cites W2134459661 @default.
- W2129804985 cites W2142082007 @default.
- W2129804985 cites W2145537745 @default.
- W2129804985 cites W2150822300 @default.
- W2129804985 cites W2152242891 @default.
- W2129804985 cites W2152481704 @default.
- W2129804985 cites W2154346707 @default.
- W2129804985 cites W2155298532 @default.
- W2129804985 cites W2157848968 @default.
- W2129804985 cites W2167157872 @default.
- W2129804985 cites W2169643258 @default.
- W2129804985 cites W4366956157 @default.
- W2129804985 doi "https://doi.org/10.2967/jnumed.113.136341" @default.
- W2129804985 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/4246705" @default.
- W2129804985 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/25278515" @default.
- W2129804985 hasPublicationYear "2014" @default.
- W2129804985 type Work @default.
- W2129804985 sameAs 2129804985 @default.
- W2129804985 citedByCount "168" @default.
- W2129804985 countsByYear W21298049852015 @default.
- W2129804985 countsByYear W21298049852016 @default.
- W2129804985 countsByYear W21298049852017 @default.
- W2129804985 countsByYear W21298049852018 @default.
- W2129804985 countsByYear W21298049852019 @default.
- W2129804985 countsByYear W21298049852020 @default.
- W2129804985 countsByYear W21298049852021 @default.
- W2129804985 countsByYear W21298049852022 @default.
- W2129804985 countsByYear W21298049852023 @default.
- W2129804985 crossrefType "journal-article" @default.
- W2129804985 hasAuthorship W2129804985A5022933070 @default.
- W2129804985 hasAuthorship W2129804985A5033672920 @default.
- W2129804985 hasAuthorship W2129804985A5038025408 @default.
- W2129804985 hasAuthorship W2129804985A5038252449 @default.
- W2129804985 hasAuthorship W2129804985A5053723979 @default.
- W2129804985 hasAuthorship W2129804985A5065759765 @default.
- W2129804985 hasAuthorship W2129804985A5068757126 @default.
- W2129804985 hasAuthorship W2129804985A5084807683 @default.
- W2129804985 hasAuthorship W2129804985A5091239458 @default.
- W2129804985 hasBestOaLocation W21298049851 @default.
- W2129804985 hasConcept C105702510 @default.
- W2129804985 hasConcept C120665830 @default.
- W2129804985 hasConcept C121332964 @default.
- W2129804985 hasConcept C123688308 @default.
- W2129804985 hasConcept C126838900 @default.
- W2129804985 hasConcept C143409427 @default.
- W2129804985 hasConcept C153180895 @default.
- W2129804985 hasConcept C154945302 @default.
- W2129804985 hasConcept C184652730 @default.
- W2129804985 hasConcept C2775842073 @default.
- W2129804985 hasConcept C2776673561 @default.
- W2129804985 hasConcept C2779751349 @default.
- W2129804985 hasConcept C2781192897 @default.
- W2129804985 hasConcept C2989005 @default.
- W2129804985 hasConcept C39313694 @default.
- W2129804985 hasConcept C41008148 @default.
- W2129804985 hasConcept C54170458 @default.
- W2129804985 hasConcept C71924100 @default.
- W2129804985 hasConcept C89600930 @default.
- W2129804985 hasConceptScore W2129804985C105702510 @default.
- W2129804985 hasConceptScore W2129804985C120665830 @default.
- W2129804985 hasConceptScore W2129804985C121332964 @default.
- W2129804985 hasConceptScore W2129804985C123688308 @default.
- W2129804985 hasConceptScore W2129804985C126838900 @default.
- W2129804985 hasConceptScore W2129804985C143409427 @default.
- W2129804985 hasConceptScore W2129804985C153180895 @default.