Matches in SemOpenAlex for { <https://semopenalex.org/work/W1932945847> ?p ?o ?g. }
- W1932945847 endingPage "1400" @default.
- W1932945847 startingPage "1392" @default.
- W1932945847 abstract "Since the brain's gray matter (GM) and white matter (WM) metabolite concentrations differ, their partial volumes can vary the voxel's ¹H MR spectroscopy (¹H-MRS) signal, reducing sensitivity to changes. While single-voxel ¹H-MRS cannot differentiate between WM and GM signals, partial volume correction is feasible by MR spectroscopic imaging (MRSI) using segmentation of the MRI acquired for VOI placement. To determine the magnitude of this effect on metabolic quantification, we segmented a 1-mm³ resolution MRI into GM, WM and CSF masks that were co-registered with the MRSI grid to yield their partial volumes in approximately every 1 cm³ spectroscopic voxel. Each voxel then provided one equation with two unknowns: its i- metabolite's GM and WM concentrations C(i) (GM) , C(i) (WM) . With the voxels' GM and WM volumes as independent coefficients, the over-determined system of equations was solved for the global averaged C(i) (GM) and C(i) (WM) . Trading off local concentration differences offers three advantages: (i) higher sensitivity due to combined data from many voxels; (ii) improved specificity to WM versus GM changes; and (iii) reduced susceptibility to partial volume effects. These improvements made no additional demands on the protocol, measurement time or hardware. Applying this approach to 18 volunteered 3D MRSI sets of 480 voxels each yielded N-acetylaspartate, creatine, choline and myo-inositol C(i) (GM) concentrations of 8.5 ± 0.7, 6.9 ± 0.6, 1.2 ± 0.2, 5.3 ± 0.6 mM, respectively, and C(i) (WM) concentrations of 7.7 ± 0.6, 4.9 ± 0.5, 1.4 ± 0.1 and 4.4 ± 0.6mM, respectively. We showed that unaccounted voxel WM or GM partial volume can vary absolute quantification by 5-10% (more for ratios), which can often double the sample size required to establish statistical significance." @default.
- W1932945847 created "2016-06-24" @default.
- W1932945847 creator A5010431164 @default.
- W1932945847 creator A5051811962 @default.
- W1932945847 creator A5054828860 @default.
- W1932945847 creator A5076062165 @default.
- W1932945847 date "2012-06-20" @default.
- W1932945847 modified "2023-10-06" @default.
- W1932945847 title "The role of gray and white matter segmentation in quantitative proton MR spectroscopic imaging" @default.
- W1932945847 cites W1970334626 @default.
- W1932945847 cites W1974898678 @default.
- W1932945847 cites W1987887348 @default.
- W1932945847 cites W1987997176 @default.
- W1932945847 cites W2002077325 @default.
- W1932945847 cites W2003997295 @default.
- W1932945847 cites W2008819716 @default.
- W1932945847 cites W2011344206 @default.
- W1932945847 cites W2018316883 @default.
- W1932945847 cites W2050183904 @default.
- W1932945847 cites W2051925565 @default.
- W1932945847 cites W2052065888 @default.
- W1932945847 cites W2055629443 @default.
- W1932945847 cites W2060718052 @default.
- W1932945847 cites W2061202029 @default.
- W1932945847 cites W2071476645 @default.
- W1932945847 cites W2073446781 @default.
- W1932945847 cites W2074678903 @default.
- W1932945847 cites W2075789321 @default.
- W1932945847 cites W2076681561 @default.
- W1932945847 cites W2087379486 @default.
- W1932945847 cites W2088315332 @default.
- W1932945847 cites W2094454256 @default.
- W1932945847 cites W2099422600 @default.
- W1932945847 cites W2102654903 @default.
- W1932945847 cites W2110208125 @default.
- W1932945847 cites W2119848633 @default.
- W1932945847 cites W2121552129 @default.
- W1932945847 cites W2122591615 @default.
- W1932945847 cites W2144867092 @default.
- W1932945847 cites W2152883366 @default.
- W1932945847 cites W2156768950 @default.
- W1932945847 cites W2158514967 @default.
- W1932945847 cites W2163119289 @default.
- W1932945847 cites W2166080742 @default.
- W1932945847 cites W639957762 @default.
- W1932945847 doi "https://doi.org/10.1002/nbm.2812" @default.
- W1932945847 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/3449040" @default.
- W1932945847 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/22714729" @default.
- W1932945847 hasPublicationYear "2012" @default.
- W1932945847 type Work @default.
- W1932945847 sameAs 1932945847 @default.
- W1932945847 citedByCount "60" @default.
- W1932945847 countsByYear W19329458472012 @default.
- W1932945847 countsByYear W19329458472013 @default.
- W1932945847 countsByYear W19329458472014 @default.
- W1932945847 countsByYear W19329458472015 @default.
- W1932945847 countsByYear W19329458472016 @default.
- W1932945847 countsByYear W19329458472017 @default.
- W1932945847 countsByYear W19329458472018 @default.
- W1932945847 countsByYear W19329458472019 @default.
- W1932945847 countsByYear W19329458472020 @default.
- W1932945847 countsByYear W19329458472021 @default.
- W1932945847 countsByYear W19329458472022 @default.
- W1932945847 countsByYear W19329458472023 @default.
- W1932945847 crossrefType "journal-article" @default.
- W1932945847 hasAuthorship W1932945847A5010431164 @default.
- W1932945847 hasAuthorship W1932945847A5051811962 @default.
- W1932945847 hasAuthorship W1932945847A5054828860 @default.
- W1932945847 hasAuthorship W1932945847A5076062165 @default.
- W1932945847 hasBestOaLocation W19329458472 @default.
- W1932945847 hasConcept C121332964 @default.
- W1932945847 hasConcept C126838900 @default.
- W1932945847 hasConcept C143409427 @default.
- W1932945847 hasConcept C185592680 @default.
- W1932945847 hasConcept C2777477808 @default.
- W1932945847 hasConcept C2779896295 @default.
- W1932945847 hasConcept C2781192897 @default.
- W1932945847 hasConcept C2989005 @default.
- W1932945847 hasConcept C46141821 @default.
- W1932945847 hasConcept C54170458 @default.
- W1932945847 hasConcept C55493867 @default.
- W1932945847 hasConcept C71924100 @default.
- W1932945847 hasConcept C82233179 @default.
- W1932945847 hasConcept C96781048 @default.
- W1932945847 hasConceptScore W1932945847C121332964 @default.
- W1932945847 hasConceptScore W1932945847C126838900 @default.
- W1932945847 hasConceptScore W1932945847C143409427 @default.
- W1932945847 hasConceptScore W1932945847C185592680 @default.
- W1932945847 hasConceptScore W1932945847C2777477808 @default.
- W1932945847 hasConceptScore W1932945847C2779896295 @default.
- W1932945847 hasConceptScore W1932945847C2781192897 @default.
- W1932945847 hasConceptScore W1932945847C2989005 @default.
- W1932945847 hasConceptScore W1932945847C46141821 @default.
- W1932945847 hasConceptScore W1932945847C54170458 @default.
- W1932945847 hasConceptScore W1932945847C55493867 @default.
- W1932945847 hasConceptScore W1932945847C71924100 @default.
- W1932945847 hasConceptScore W1932945847C82233179 @default.
- W1932945847 hasConceptScore W1932945847C96781048 @default.