2024
Investigating the Bone Bruise Patterns in Pediatric Patients With Contact and Noncontact Acute Anterior Cruciate Ligament Tears: A Multicenter Study
Moran J, Amaral J, Lee M, Jones R, Gross P, Katz L, Wang A, Carrino J, Jimenez A, Chhabra B, Kan J, Smith B, Gladstein A, McKay S, LaPrade R, Fabricant P, Medvecky M. Investigating the Bone Bruise Patterns in Pediatric Patients With Contact and Noncontact Acute Anterior Cruciate Ligament Tears: A Multicenter Study. The American Journal Of Sports Medicine 2024, 52: 2456-2463. PMID: 39101652, DOI: 10.1177/03635465241264282.Peer-Reviewed Original ResearchMagnetic resonance imagingMechanism of injuryBone bruise patternPreoperative MRI scansACL tearsBone bruisesNoncontact ACL tearsPediatric patientsPresence of bone bruiseMeniscus tearsFat-suppressed T2-weighted imagesAcute anterior cruciate ligament tearsLocation of bone bruisesMRI scansAnterior cruciate ligament (ACL) tearsIpsilateral knee injuriesAnterior cruciate ligament tearsPrimary ACL reconstruction surgeryMagnetic resonance imaging scansConcomitant medial meniscus tearLateral meniscus tearsMedial meniscus tearCruciate ligament tearsT2-weighted imagesNoncontact mechanism of injury
2022
Brain injury patterns in hypoxic ischemic encephalopathy of term neonates
Bobba PS, Malhotra A, Sheth KN, Taylor SN, Ment LR, Payabvash S. Brain injury patterns in hypoxic ischemic encephalopathy of term neonates. Journal Of Neuroimaging 2022, 33: 79-84. PMID: 36164277, DOI: 10.1111/jon.13052.Peer-Reviewed Original ResearchConceptsSevere hypoxic-ischemic encephalopathyHypoxic-ischemic encephalopathyHypoxic-ischemic lesionsSeverity of HIEModerate hypoxic-ischemic encephalopathyTerm neonatesIschemic lesionsDiffusion-weighted imagingBasal gangliaDiagnosis of HIESeverity categoriesBrain injury patternsDeep white matterMRI diffusion-weighted imagingT2-weighted imagesPresence of lesionsVoxel-wise analysisRespiration (APGAR) scoreInfarct volumeStandard brain spaceIschemic encephalopathyInjury patternsBrain injuryLentiform nucleusLesion volume
2016
Incorporating Androgen Deprivation With Dose-Escalated External-Beam Radiotherapy for Prostate Cancer
Dosoretz A, Yu J. Incorporating Androgen Deprivation With Dose-Escalated External-Beam Radiotherapy for Prostate Cancer. Journal Of Clinical Oncology 2016, 34: 1718-1722. PMID: 27001587, DOI: 10.1200/jco.2015.66.3237.Peer-Reviewed Original ResearchConceptsExternal-beam radiotherapyDigital rectal examinationPalpable diseaseRectal examinationGleason 3+3 diseaseOncology Grand Rounds seriesHigh-grade prostate cancerMagnetic resonance imaging-ultrasound fusionMultiparametric magnetic resonance imagingAdjacent normal prostatePositive biopsy coresUltrasound-guided biopsyInguinal hernia repairT2-weighted imagesJournal of Clinical OncologyPatient's medical historyMagnetic resonance imagingHypointense featuresGleason 4Prostate volumePSA levelsAndrogen deprivationCataract surgeryIntraprostatic lesionsBiopsy cores
2015
SU‐E‐T‐661: Quantitative MRI Assessment of a Novel Direction‐Modulated Brachytherapy Tandem Applicator for Cervical Cancer
Soliman A, Elzibak A, Fatemi A, Safigholi H, Han D, Leung E, Ravi A, Song W. SU‐E‐T‐661: Quantitative MRI Assessment of a Novel Direction‐Modulated Brachytherapy Tandem Applicator for Cervical Cancer. Medical Physics 2015, 42: 3488-3488. DOI: 10.1118/1.4925024.Peer-Reviewed Original ResearchDirection modulated brachytherapyWater phantomLine profilesBrachytherapy of cervical cancerMulti-channel receiver coilsMRI-guided brachytherapyTurbo spin echoCervical cancerMR image qualityImage guided brachytherapyBackground inhomogeneityFull-widthPhantomTandem applicationsFWHMT2-weighted imagesT2-weighted sequencesBody coilSusceptibility artifactsQuantitative MRI assessmentReceiver coilClinical imaging protocolsMRI scanning protocolMR scannerInhomogeneity
2013
Quantitative Susceptibility Mapping of Multiple Sclerosis Lesions at Various Ages
Chen W, Gauthier SA, Gupta A, Comunale J, Liu T, Wang S, Pei M, Pitt D, Wang Y. Quantitative Susceptibility Mapping of Multiple Sclerosis Lesions at Various Ages. Radiology 2013, 271: 183-92. PMID: 24475808, PMCID: PMC4263629, DOI: 10.1148/radiol.13130353.Peer-Reviewed Original ResearchConceptsNormal-appearing white matterMS lesionsMultiple sclerosis lesionsEnhanced lesionsQuantitative susceptibility mappingMR examinationsSclerosis lesionsConventional magnetic resonance imagingMagnetic resonance imagingT2-weighted imagesMS patientsPathophysiologic featuresCerebrospinal fluidOnline supplemental materialWhite matterLesionsQSM imagesResonance imagingPatientsMR imagingThree-dimensional gradient-echo sequenceGradient echo sequenceMonthsBonferroni correctionAge
2004
Extraaxial neurofibromas versus neurilemmomas: discrimination with MRI.
Jee W, Oh S, McCauley T, Ryu K, Suh J, Lee J, Park J, Chun K, Sung M, Kim K, Lee Y, Kang Y, Ok I, Kim J. Extraaxial neurofibromas versus neurilemmomas: discrimination with MRI. American Journal Of Roentgenology 2004, 183: 629-33. PMID: 15333347, DOI: 10.2214/ajr.183.3.1830629.Peer-Reviewed Original ResearchConceptsT2-weighted imagesMRI findingsExact testTarget signFisher's exact testLow-signal marginCombination of findingsThin hyperintense rimChi-square testPeripheral enhancementCystic areasSurgical resultsContrast-enhanced imagesImaging criteriaDiffuse enhancementNeurilemmomaNeurofibromasHyperintense rimCentral enhancementFascicular appearancePatientsDefinitive differentiationMRISignificant differencesNerve
2003
Orbitofrontal Cholesterol Granuloma
Arat Y, Chaudhry I, Boniuk M. Orbitofrontal Cholesterol Granuloma. Ophthalmic Plastic And Reconstructive Surgery 2003, 19: 382-387. PMID: 14506423, DOI: 10.1097/01.iop.0000083644.62765.70.Peer-Reviewed Original ResearchMeSH KeywordsAdultAgedAged, 80 and overCholesterolExophthalmosFemaleFrontal BoneGiant Cells, Foreign-BodyGranuloma, Foreign-BodyHumansMagnetic Resonance ImagingMaleMiddle AgedOphthalmologic Surgical ProceduresOrbital DiseasesPostoperative ComplicationsRetrospective StudiesTomography, X-Ray ComputedTreatment OutcomeConceptsOrbitofrontal cholesterol granulomaCholesterol granulomaSoft tissue massLytic lesionsExtraconal soft tissue massLow incidence of recurrenceCase of cholesterol granulomaTissue massNon-contrast-enhancing lesionIncidence of recurrenceAssociated soft tissue massT2-weighted imagesOrbital cholesterol granulomaMagnetic resonance imagingSubbrow incisionSurgical excisionLateral orbitotomyRecurrent symptomsSinus explorationOrbital extensionRadiological featuresCystic lesionsHistopathological findingsFrontal mucoceleMean ageDiscrimination of Metastatic from Acute Osteoporotic Compression Spinal Fractures with MR Imaging1
Jung H, Jee W, McCauley T, Ha K, Choi K. Discrimination of Metastatic from Acute Osteoporotic Compression Spinal Fractures with MR Imaging1 . RadioGraphics 2003, 23: 179-87. PMID: 12533652, DOI: 10.1148/rg.231025043.Peer-Reviewed Original ResearchConceptsAcute osteoporotic compression fracturesOsteoporotic compression fracturesMetastatic compression fracturesCompression fracturesT2-weighted imagesEpidural massVertebral bodyMagnetic resonance imaging (MRI) findingsBone marrow signal intensityConvex posterior borderNormal bone marrow signal intensityMultiple compression fracturesResonance Imaging FindingsAbnormal signal intensityMarrow signal intensitySignal intensitySpinal metastasesImaging findingsSpinal fracturesParaspinal massPosterior elementsSpin-echo T2-weighted imagesMR Imaging1Posterior borderFast spin-echo T2-weighted images
2002
Magnetic Resonance Evaluation of the Urethra and Lower Genitourinary Tract in Symptomatic Women
Israel G, Lee V, Resnick D, Lavelle M, Krinsky G, Nitti V, Weinreb J. Magnetic Resonance Evaluation of the Urethra and Lower Genitourinary Tract in Symptomatic Women. Journal Of Women's Imaging 2002, 4: 165-172. DOI: 10.1097/00130747-200211000-00003.Peer-Reviewed Original ResearchMR imagingCavernous hemangiomaMR examinationsLower urinary tractPhysical examination findingsSquamous cell carcinomaPelvic floor dysfunctionContrast-enhanced T1-weighted imagesVaginal wall cystTethered spinal cordMR imaging findingsMagnetic resonance evaluationLower Genitourinary TractMagnetic resonance imagingT2-weighted imagesT1-weighted imagesChart reviewPelvic ultrasonographyIntravenous pyelographySymptomatic womenExamination findingsImaging findingsPathology findingsCell carcinomaUrinary tract
2000
MR Imaging and Histologic Features of Subinsular Bright Spots on T2-weighted MR Images: Virchow-Robin Spaces of the Extreme Capsule and Insular Cortex
Song C, Kim J, Kier E, Bronen R. MR Imaging and Histologic Features of Subinsular Bright Spots on T2-weighted MR Images: Virchow-Robin Spaces of the Extreme Capsule and Insular Cortex. Radiology 2000, 214: 671-677. PMID: 10715028, DOI: 10.1148/radiology.214.3.r00mr17671.Peer-Reviewed Original ResearchConceptsInsular cortexExtreme capsuleMR imagingControl subjectsBrain specimensPerivascular spacesFormalin-fixed brain specimensFluid-attenuated inversion recovery sequencesVirchow-Robin spacesT2-weighted magnetic resonance imagesCoronal T2-weighted imagesT2-weighted imagesCoronal MR imagesHigh signal intensityT2-weighted MR imagesInversion recovery sequenceHistologic featuresHistologic findingsCerebrospinal fluidMR imagesPatientsWhite matterPathologic conditionsGross anatomic inspectionMagnetic resonance images
1999
Chondroblastoma: MR Characteristics with Pathologic Correlation
Jee W, Park Y, McCauley T, Choi K, Ryu K, Suh J, Suh K, Cho J, Lee J, Park J, Lee Y, Ok I, Kim J. Chondroblastoma: MR Characteristics with Pathologic Correlation. Journal Of Computer Assisted Tomography 1999, 23: 721-726. PMID: 10524855, DOI: 10.1097/00004728-199909000-00016.Peer-Reviewed Original Research
1992
Manganese (II) N,N'-dipyridoxylethylenediamine-N,N'-diacetate 5,5'-bis(phosphate): clinical experience with a new contrast agent.
Rofsky N, Weinreb J. Manganese (II) N,N'-dipyridoxylethylenediamine-N,N'-diacetate 5,5'-bis(phosphate): clinical experience with a new contrast agent. Magnetic Resonance Quarterly 1992, 8: 156-68. PMID: 1390058.Peer-Reviewed Original ResearchConceptsMagnetic resonance imagingMn-DPDPN'-dipyridoxylethylenediamineClinical experienceNon-enhanced T1Significant adverse eventsEnhanced magnetic resonance imagingManganese NT2-weighted imagesAdverse eventsHepatocellular originClinical trialsContrast agentsHepatobiliary agentsResonance imagingLiver imagingFavorable resultsLesion detectionNew contrast agentsIssues of safetyImaging techniquesAgentsImagingOptimal methodNumerous strategiesHepatic MR imaging with Mn-DPDP: safety, image quality, and sensitivity.
Bernardino M, Young S, Lee J, Weinreb J. Hepatic MR imaging with Mn-DPDP: safety, image quality, and sensitivity. Radiology 1992, 183: 53-8. PMID: 1549694, DOI: 10.1148/radiology.183.1.1549694.Peer-Reviewed Original ResearchConceptsMn-DPDPMore lesionsAdditional lesionsT1-weighted imagesDose groupSerious side effectsMagnetic resonance imagingT2-weighted imagesFocal hepatic diseaseN'-dipyridoxylethylenediamineIntravenous bolusHepatic diseaseMultiinstitutional studyPatientsSide effectsLesionsResonance imagingHepatic MRManganese NImaging parametersContrast agentsImagingGroupInfusionBolus
1990
The value of MR imaging in distinguishing leiomyomas from other solid pelvic masses when sonography is indeterminate.
Weinreb J, Barkoff N, Megibow A, Demopoulos R. The value of MR imaging in distinguishing leiomyomas from other solid pelvic masses when sonography is indeterminate. American Journal Of Roentgenology 1990, 154: 295-9. PMID: 2105017, DOI: 10.2214/ajr.154.2.2105017.Peer-Reviewed Original ResearchConceptsSolid pelvic massPelvic massUterine leiomyomaLow signal intensityMR imagingMalignant tumorsMR criteriaPedunculated uterine leiomyomaPelvic malignant tumorsOvarian malignant tumorsDiagnosis of leiomyomaSquamous cell carcinomaSolid adnexal massesTypes of tumorsT2-weighted imagesT1-weighted imagesOvarian fibromaCell carcinomaAdnexal massesBroad ligamentSonographic appearanceDiagnostic criteriaLeiomyomaSignal intensityNormal myometrium
1989
Endometriosis: appearance and detection at MR imaging.
Zawin M, McCarthy S, Scoutt L, Comite F. Endometriosis: appearance and detection at MR imaging. Radiology 1989, 171: 693-6. PMID: 2717740, DOI: 10.1148/radiology.171.3.2717740.Peer-Reviewed Original Research
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