2024
Imaging chronic active lesions in multiple sclerosis: a consensus statement
Bagnato F, Sati P, Hemond C, Elliott C, Gauthier S, Harrison D, Mainero C, Oh J, Pitt D, Shinohara R, Smith S, Trapp B, Azevedo C, Calabresi P, Henry R, Laule C, Ontaneda D, Rooney W, Sicotte N, Reich D, Absinta M. Imaging chronic active lesions in multiple sclerosis: a consensus statement. Brain 2024, 147: 2913-2933. PMID: 38226694, PMCID: PMC11370808, DOI: 10.1093/brain/awae013.Peer-Reviewed Original ResearchChronic active lesionsMagnetic resonance imagingConsensus statementMultiple sclerosisActive lesionsManifestations of chronic inflammationParamagnetic rim lesionsMRI-definedNorth American ImagingRadiological definitionChronic inflammationRim lesionsClinical translationLesionsResonance imagingMRI sequencesIn vivoT1-wBrains of personsBiomarkers
2023
A multicenter pilot study evaluating simplified central vein assessment for the diagnosis of multiple sclerosis
Daboul L, O’Donnell C, Amin M, Rodrigues P, Derbyshire J, Azevedo C, Bar-Or A, Caverzasi E, Calabresi P, Cree B, Freeman L, Henry R, Longbrake E, Oh J, Papinutto N, Pelletier D, Prchkovska V, Raza P, Ramos M, Samudralwar R, Schindler M, Sotirchos E, Sicotte N, Solomon A, Shinohara R, Reich D, Sati P, Ontaneda D. A multicenter pilot study evaluating simplified central vein assessment for the diagnosis of multiple sclerosis. Multiple Sclerosis Journal 2023, 30: 25-34. PMID: 38088067, PMCID: PMC11037932, DOI: 10.1177/13524585231214360.Peer-Reviewed Original ResearchConceptsCentral vein signMultiple sclerosisPositive lesionsInter-rater agreementDiagnosis of MSMagnetic resonance imaging (MRI) biomarkersDiagnostic performancePossible multiple sclerosisInter-rater reliability assessmentGood diagnostic performanceMcDonald criteriaMulticenter studyVein assessmentMean ageVein signImaging biomarkersLesionsMRI sequencesCharacteristic curveSclerosisPatientsDiagnosisAssessmentParticipantsOptimal methodMagnetic resonance imaging quality in the context of a knee-spanning external fixator placed inside the MR bore: a literature review
Marcel A, Green J, Porrino J, Katz L, Medvecky M. Magnetic resonance imaging quality in the context of a knee-spanning external fixator placed inside the MR bore: a literature review. Skeletal Radiology 2023, 53: 629-636. PMID: 37955679, DOI: 10.1007/s00256-023-04505-2.Peer-Reviewed Original ResearchKnee-spanning external fixatorExternal fixatorNoise ratioMR boreSoft tissue repairDevice compositionKnee injury patientsLimb-threatening injuriesSoft tissue injuriesUtility of MRIMagnetic resonance imagingMagnetic field strengthImage qualityField strengthKnee dislocationInjury patientsTissue injuryAnatomical assessmentUseful diagnostic informationResonance imagingLigamentous structuresFixatorMRIEmergent assessmentMRI sequencesDSFormer: A Dual-domain Self-supervised Transformer for Accelerated Multi-contrast MRI Reconstruction
Zhou B, Dey N, Schlemper J, Salehi S, Liu C, Duncan J, Sofka M. DSFormer: A Dual-domain Self-supervised Transformer for Accelerated Multi-contrast MRI Reconstruction. 2023, 00: 4955-4964. DOI: 10.1109/wacv56688.2023.00494.Peer-Reviewed Original ResearchReconstruction networkSelf-supervised learning strategyHigh-fidelity reconstructionConvolutional architectureMRI reconstructionTraining dataFull supervisionInformation sharingTime costMulti-contrast MRINetworkLearning strategiesMultiple acquisitionsArchitectureSharingFine anatomical detailsRedundancyCostMultiple contrastsMRI sequencesReconstructionComplementary imaging modalities
2020
Reporting Guidelines, Review of Methodological Standards, and Challenges Toward Harmonization in Bone Marrow Adiposity Research. Report of the Methodologies Working Group of the International Bone Marrow Adiposity Society
Tratwal J, Labella R, Bravenboer N, Kerckhofs G, Douni E, Scheller EL, Badr S, Karampinos DC, Beck-Cormier S, Palmisano B, Poloni A, Moreno-Aliaga MJ, Fretz J, Rodeheffer MS, Boroumand P, Rosen CJ, Horowitz MC, van der Eerden BCJ, Veldhuis-Vlug AG, Naveiras O. Reporting Guidelines, Review of Methodological Standards, and Challenges Toward Harmonization in Bone Marrow Adiposity Research. Report of the Methodologies Working Group of the International Bone Marrow Adiposity Society. Frontiers In Endocrinology 2020, 11: 65. PMID: 32180758, PMCID: PMC7059536, DOI: 10.3389/fendo.2020.00065.Peer-Reviewed Reviews, Practice Guidelines, Standards, and Consensus StatementsConceptsBone marrow adiposityBone marrow adipocytesMarrow adipocytesBone marrow adipogenesisSpecific MRI sequencesMarrow adiposityMarrow adipogenesisAnimal modelsRange of diseasesContrast-enhanced μCTStromal cell precursorsStudy outcomesConsensus opinionGene panelCell precursorsGold standardRT-qPCRMRI sequencesPotential roleMinimal reporting standardsPrecise reportingHistomorphometry
2019
Quantitative MRI for Assessment of Treatment Outcomes in a Rabbit VX2 Hepatic Tumor Model
Keller S, Chapiro J, Brangsch J, Reimann C, Collettini F, Sack I, Savic LJ, Hamm B, Goldberg SN, Makowski M. Quantitative MRI for Assessment of Treatment Outcomes in a Rabbit VX2 Hepatic Tumor Model. Journal Of Magnetic Resonance Imaging 2019, 52: 668-685. PMID: 31713973, DOI: 10.1002/jmri.26968.Peer-Reviewed Original ResearchConceptsMagnetic resonance imagingTranscatheter arterial embolizationHepatic tumor modelDiffusion-weighted imagingFunctional MRI sequencesRadiofrequency ablationTreatment outcomesHepatocellular carcinomaAnaplastic squamous cell carcinomaMRI sequencesTumor modelSecondary liver cancerSquamous cell carcinomaConventional magnetic resonance imagingHigh tumor vascularityDifferent treatment settingsCommon cancer typesFunctional magnetic resonance imagingQuantitative magnetic resonance imagingFuture MRI studiesLocoregional interventionsArterial embolizationLiver functionCell carcinomaInterventional treatment
2017
Magnetic Resonance Imaging Detection of Intraplaque Hemorrhage
McNally JS, Kim SE, Mendes J, Hadley JR, Sakata A, De Havenon AH, Treiman GS, Parker DL. Magnetic Resonance Imaging Detection of Intraplaque Hemorrhage. Magnetic Resonance Insights 2017, 10: 1178623x17694150. PMID: 28469441, PMCID: PMC5348123, DOI: 10.1177/1178623x17694150.Peer-Reviewed Original ResearchCarotid intraplaque hemorrhageFuture stroke riskIntraplaque hemorrhageStroke riskCarotid artery atherosclerosisPercent diameter stenosisMagnetic resonance imaging (MRI) detectionT1-weighted MRI sequencesMagnetic resonance imaging sequenceArtery atherosclerosisIschemic strokeStroke etiologyDiameter stenosisClinical trialsHemorrhageClinical useMajor causeStroke sourcesMRI sequencesMRINeck coilImaging sequenceRiskLumenImaging
2009
Fractal dimension analysis of grey matter in multiple sclerosis
Esteban F, Sepulcre J, de Miras J, Navas J, de Mendizábal N, Goñi J, Quesada J, Bejarano B, Villoslada P. Fractal dimension analysis of grey matter in multiple sclerosis. Journal Of The Neurological Sciences 2009, 282: 67-71. PMID: 19167728, DOI: 10.1016/j.jns.2008.12.023.Peer-Reviewed Original ResearchConceptsGray matterMagnetic resonance imagingMultiple sclerosisVoxel-based morphometry approachExtensive grey matterAttack of MST1 MRI sequencesT2 lesion loadShorter disease durationWhite matter abnormalitiesGM abnormalitiesMorphometry approachGM morphologyGM atrophyMeasures of GMLong-term disabilityDisease durationHealthy controlsHuman brainMS patientsLesion loadPatientsAbnormalitiesResonance imagingMRI sequences
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