2025
A genetically informed brain atlas for enhancing brain imaging genomics
Bao J, Wen J, Chang C, Mu S, Chen J, Shivakumar M, Cui Y, Erus G, Yang Z, Yang S, Wen Z, Zhao Y, Kim D, Duong-Tran D, Saykin A, Zhao B, Davatzikos C, Long Q, Shen L. A genetically informed brain atlas for enhancing brain imaging genomics. Nature Communications 2025, 16: 3524. PMID: 40229250, PMCID: PMC11997130, DOI: 10.1038/s41467-025-57636-6.Peer-Reviewed Original ResearchConceptsBrain imaging genomicsImaging genomicsComplex traits/diseasesSNP heritabilityFunctional annotationGenetic architecturePolygenic risk scoresGenomic investigationsGenetic ancestryDiscovery powerBrain atlasesHuman brain structureGenetic determinantsNeuroanatomical heterogeneityGenomeNeuroanatomical variationImaging endophenotypesBrain structuresMolecular levelBrain voxelsHeritabilityPhenotypic correlationsGiant regionGeneticsBrain conditions
2024
Lipid removal in deuterium metabolic imaging (DMI) using spatial prior knowledge
de Graaf R, Liu Y, Corbin Z, De Feyter H. Lipid removal in deuterium metabolic imaging (DMI) using spatial prior knowledge. Magnetic Resonance 2024, 5: 21-31. PMID: 39980872, PMCID: PMC11836565, DOI: 10.5194/mr-5-21-2024.Peer-Reviewed Original Research
2007
A Maximal-Correlation Approach Using ICA for Testing Functional Network Connectivity Applied to Schizophrenia
Jafri M, Pearlson G, Calhoun V. A Maximal-Correlation Approach Using ICA for Testing Functional Network Connectivity Applied to Schizophrenia. 2007, 468-471. DOI: 10.1109/isbi.2007.356890.Peer-Reviewed Original Research
1998
Positron Emission Tomography [15O]Water Studies with Short InterScan Interval for Single-Subject and Group Analysis: Influence of Background Subtraction
Chmielowska J, Coghill R, Maisog J, Carson R, Herscovitch P, Honda M, Chen R, Hallett M. Positron Emission Tomography [15O]Water Studies with Short InterScan Interval for Single-Subject and Group Analysis: Influence of Background Subtraction. Cerebrovascular And Brain Metabolism Reviews 1998, 18: 433-444. PMID: 9538909, DOI: 10.1097/00004647-199804000-00012.Peer-Reviewed Original ResearchConceptsShort interscan intervalPositron emission tomographySingle-subject analysisSingle-subjectInterscan intervalMotor brain structuresActivated brain regionsPositron emission tomography dataMotor activation taskUncorrected data setsBrain regionsBrain structuresGroup analysisActive tasksBrain voxelsWorsley's methodTalairach coordinatesGroup data analysisEmission tomographyUncorrected scansAnalytical strategyNormal subjectsInjected doseUnique caseActivation maps
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