Developing standards for MRI evaluation of joints in children with juvenile idiopathic arthritis utilizing the temporomandibular joint as a model
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M. Navallas | M. Tolend | A. Doria | M. V. van Rossum | R. Hemke | J. Panwar | T. Otobo | E. I. Clemente
[1] P. D. Di Paolo,et al. A novel magnetic resonance imaging scoring system for active and chronic changes in children and adolescents with juvenile idiopathic arthritis of the hip , 2022, Pediatric Radiology.
[2] F. Panzarella,et al. Magnetic resonance imaging assessment of juvenile idiopathic arthritis using OMERACT and EuroTMjoint classifications. , 2022, International journal of oral and maxillofacial surgery.
[3] P. Ferguson,et al. 2021 American College of Rheumatology Guideline for the Treatment of Juvenile Idiopathic Arthritis: Therapeutic Approaches for Oligoarthritis, Temporomandibular Joint Arthritis, and Systemic Juvenile Idiopathic Arthritis , 2022, Arthritis & rheumatology.
[4] M. Stoll,et al. Changes over time in inflammatory and structural lesions at the sacroiliac joint in children with spondyloarthritis exposed and unexposed to tumor necrosis factor inhibitor , 2021, Pediatric Rheumatology.
[5] J. Jaremko,et al. Reliability of the Preliminary OMERACT Juvenile Idiopathic Arthritis MRI Score (OMERACT JAMRIS-SIJ) , 2021, Journal of clinical medicine.
[6] J. Jaremko,et al. Assessing the Reliability of the OMERACT Juvenile Idiopathic Arthritis Magnetic Resonance Scoring System for Temporomandibular Joints (JAMRIS-TMJ) , 2021, Journal of clinical medicine.
[7] P. Tugwell,et al. The evolution of instrument selection for inclusion in core outcome sets at OMERACT: Filter 2.2. , 2021, Seminars in arthritis and rheumatism.
[8] J. Jaremko,et al. Consensus-driven conceptual development of a standardized whole body-MRI scoring system for assessment of disease activity in juvenile idiopathic arthritis: MRI in JIA OMERACT working group. , 2021, Seminars in Arthritis & Rheumatism.
[9] J. Jaremko,et al. Atlas of MRI findings of sacroiliitis in pediatric sacroiliac joints to accompany the updated preliminary OMERACT pediatric JAMRIS (Juvenile Idiopathic Arthritis MRI Score) scoring system: Part II: Structural damage lesions. , 2021, Seminars in arthritis and rheumatism.
[10] J. Jaremko,et al. Atlas of MRI findings of sacroiliitis in pediatric sacroiliac joints to accompany the updated preliminary OMERACT pediatric JAMRIS (Juvenile Idiopathic Arthritis MRI Score) scoring system: Part I: Active lesions. , 2021, Seminars in arthritis and rheumatism.
[11] C. Terwee,et al. Key concepts in clinical epidemiology: Responsiveness, the longitudinal aspect of validity. , 2021, Journal of clinical epidemiology.
[12] J. Jaremko,et al. Discrete Choice Experiment on a Magnetic Resonance Imaging Scoring System for Temporomandibular Joints in Juvenile Idiopathic Arthritis , 2021, Arthritis care & research.
[13] C. Malattia,et al. Current status of MR imaging of juvenile idiopathic arthritis. , 2020, Best practice & research. Clinical rheumatology.
[14] R. Saurenmann,et al. Magnetic Resonance Imaging Followup of Temporomandibular Joint Inflammation, Deformation, and Mandibular Growth in Juvenile Idiopathic Arthritis Patients Receiving Systemic Treatment , 2019, The Journal of Rheumatology.
[15] J. Jaremko,et al. Imaging assessment of children presenting with suspected or known juvenile idiopathic arthritis: ESSR-ESPR points to consider , 2020, European Radiology.
[16] K. Rosendahl,et al. Efficacy and safety of intraarticular corticosteroid injections in adolescents with juvenile idiopathic arthritis in the temporomandibular joint: a Norwegian 2-year prospective multicenter pilot study , 2020, Pediatric Rheumatology.
[17] J. Jaremko,et al. Spondyloarthritis Research Consortium of Canada sacroiliac joint inflammation and structural scores: change score reliability and recalibration utility in children , 2020, Arthritis Research & Therapy.
[18] J. Jaremko,et al. Toward Developing a Semiquantitative Whole Body-MRI Scoring for Juvenile Idiopathic Arthritis: Critical Appraisal of the State of the Art, Challenges, and Opportunities. , 2020, Academic radiology.
[19] P. Tugwell,et al. Instrument Selection Using the OMERACT Filter 2.1: The OMERACT Methodology , 2019, The Journal of Rheumatology.
[20] L. Kaban,et al. Imaging of the Temporomandibular Joint in Juvenile Idiopathic Arthritis: How Does Quantitative Compare to Semiquantitative MRI Scoring? , 2019, Journal of oral and maxillofacial surgery : official journal of the American Association of Oral and Maxillofacial Surgeons.
[21] P. Tugwell,et al. OMERACT Filter 2.1: Elaboration of the Conceptual Framework for Outcome Measurement in Health Intervention Studies , 2019, The Journal of Rheumatology.
[22] J. Jaremko,et al. Preliminary Definitions for Sacroiliac Joint Pathologies in the OMERACT Juvenile Idiopathic Arthritis Magnetic Resonance Imaging Score (OMERACT JAMRIS-SIJ) , 2019, The Journal of Rheumatology.
[23] K. Rosendahl,et al. Effect of the Inclusion of the Metacarpophalangeal Joints on the Wrist Magnetic Resonance Imaging Scoring System in Juvenile Idiopathic Arthritis , 2018, The Journal of Rheumatology.
[24] Thitiporn Junhasavasdikul,et al. Developing a reference MRI database for temporomandibular joints in healthy children and adolescents , 2018, Pediatric Radiology.
[25] D. Amin,et al. Risk Factors for Intraarticular Heterotopic Bone Formation in the Temporomandibular Joint in Juvenile Idiopathic Arthritis , 2018, The Journal of Rheumatology.
[26] K. Rosendahl,et al. Current status of wrist imaging in juvenile idiopathic arthritis , 2018, Pediatric Radiology.
[27] T. A. Larheim,et al. Imaging of temporomandibular joint abnormalities in juvenile idiopathic arthritis with a focus on developing a magnetic resonance imaging protocol , 2018, Pediatric Radiology.
[28] M. Maas,et al. Imaging of the knee in juvenile idiopathic arthritis , 2018, Pediatric Radiology.
[29] P. D. Di Paolo,et al. MINISYMPOSIUM : JUVENILE IDIOPATHIC ARTHRITIS Imaging of the hip in juvenile idiopathic arthritis , 2018 .
[30] R. Saurenmann,et al. Toward Establishing a Standardized Magnetic Resonance Imaging Scoring System for Temporomandibular Joints in Juvenile Idiopathic Arthritis , 2018, Arthritis care & research.
[31] J. Jaremko,et al. Feasibility and reliability of the Spondyloarthritis Research Consortium of Canada sacroiliac joint inflammation score in children , 2018, Arthritis Research & Therapy.
[32] R. Cron,et al. Defining the normal appearance of the temporomandibular joints by magnetic resonance imaging with contrast: a comparative study of children with and without juvenile idiopathic arthritis , 2018, Pediatric Rheumatology.
[33] K. Rosendahl,et al. Imaging in juvenile idiopathic arthritis — international initiatives and ongoing work , 2018, Pediatric Radiology.
[34] C. Kellenberger,et al. Temporomandibular joint atlas for detection and grading of juvenile idiopathic arthritis involvement by magnetic resonance imaging , 2017, Pediatric Radiology.
[35] M. Maas,et al. Magnetic Resonance Imaging (MRI) of the Knee as an Outcome Measure in Juvenile Idiopathic Arthritis: An OMERACT Reliability Study on MRI Scales , 2017, The Journal of Rheumatology.
[36] D. Furst,et al. Examining the validity of the rheumatoid arthritis magnetic resonance imaging score according to the OMERACT filter—a systematic literature review , 2017, Rheumatology.
[37] L. Henderson,et al. Quantifying Temporomandibular Joint Synovitis in Children With Juvenile Idiopathic Arthritis , 2016, Arthritis care & research.
[38] K. Rosendahl,et al. The many shades of enhancement: timing of post-gadolinium images strongly influences the scoring of juvenile idiopathic arthritis wrist involvement on MRI , 2016, Pediatric Radiology.
[39] K. Rosendahl,et al. MRI Protocol for the Assessment of Juvenile Idiopathic Arthritis of the Wrist: Recommendations from the OMERACT MRI in JIA Working Group and Health-e-Child , 2016, The Journal of Rheumatology.
[40] K. Rosendahl,et al. Current Status of Efforts on Standardizing Magnetic Resonance Imaging of Juvenile Idiopathic Arthritis: Report from the OMERACT MRI in JIA Working Group and Health-e-Child , 2016, The Journal of Rheumatology.
[41] R. Moineddin,et al. MRI thresholds for discrimination between normal and mild temporomandibular joint involvement in juvenile idiopathic arthritis , 2015, Pediatric Rheumatology.
[42] R. Cron,et al. Magnetic Resonance Imaging Findings following Intraarticular Infliximab Therapy for Refractory Temporomandibular Joint Arthritis among Children with Juvenile Idiopathic Arthritis , 2015, The Journal of Rheumatology.
[43] R. Saurenmann,et al. Contrast-enhanced MRI of the temporomandibular joint: findings in children without juvenile idiopathic arthritis , 2015, Acta radiologica.
[44] E. Naredo,et al. EULAR-PReS points to consider for the use of imaging in the diagnosis and management of juvenile idiopathic arthritis in clinical practice , 2015, Annals of the rheumatic diseases.
[45] K. Rosendahl,et al. Carpal erosions in children with juvenile idiopathic arthritis: repeatability of a newly devised MR-scoring system , 2015, Pediatric Radiology.
[46] T. A. Larheim,et al. Magnetic resonance imaging of temporomandibular joints in juvenile idiopathic arthritis , 2015 .
[47] P. Winkler,et al. Early detection of temporomandibular joint arthritis in children with juvenile idiopathic arthritis – the role of contrast-enhanced MRI , 2015, Pediatric Radiology.
[48] D. Heijde,et al. Frequency of joint involvement in juvenile idiopathic arthritis during a 5-year follow-up of newly diagnosed patients: implications for MR imaging as outcome measure , 2015, Rheumatology International.
[49] D. M. van der Heijde,et al. Selecting Magnetic Resonance Imaging (MRI) Outcome Measures for Juvenile Idiopathic Arthritis (JIA) Clinical Trials: First Report of the MRI in JIA Special Interest Group , 2014, The Journal of Rheumatology.
[50] R. Cron,et al. Imaging of the Temporomandibular Joint in Juvenile Idiopathic Arthritis , 2014, Arthritis care & research.
[51] R. Ciesielski,et al. Classification of temporomandibular joint erosion, arthritis, and inflammation in patients with juvenile idiopathic arthritis , 2013, Journal of Orofacial Orthopedics / Fortschritte der Kieferorthopädie.
[52] F. Brunelle,et al. MRI assessment of tenosynovitis in children with juvenile idiopathic arthritis: inter- and intra-observer variability , 2013, Pediatric Radiology.
[53] P. Winkler,et al. Contrast-enhanced MRI of normal temporomandibular joints in children--is there enhancement or not? , 2013, Rheumatology.
[54] J. Berg,et al. The diagnostic accuracy of unenhanced MRI in the assessment of joint abnormalities in juvenile idiopathic arthritis , 2013, European Radiology.
[55] K. Rosendahl,et al. MRI of the wrist in juvenile idiopathic arthritis: erosions or normal variants? A prospective case-control study , 2013, Pediatric Radiology.
[56] R. Colbert,et al. Enthesitis-related Arthritis Is Associated with Higher Pain Intensity and Poorer Health Status in Comparison with Other Categories of Juvenile Idiopathic Arthritis: The Childhood Arthritis and Rheumatology Research Alliance Registry , 2012, The Journal of Rheumatology.
[57] K. Rosendahl,et al. MRI of the wrist in juvenile idiopathic arthritis: proposal of a paediatric synovitis score by a consensus of an international working group. Results of a multicentre reliability study , 2012, Pediatric Radiology.
[58] L. Ravà,et al. MRI assessment of bone marrow in children with juvenile idiopathic arthritis: intra- and inter-observer variability , 2012, Pediatric Radiology.
[59] R. Tattersall,et al. Symposium: connective tissue and bonesDiagnosing juvenile idiopathic arthritis , 2011 .
[60] K. Rosendahl,et al. The paediatric wrist revisited: redefining MR findings in healthy children , 2010, Annals of the rheumatic diseases.
[61] M. Valle,et al. Development and preliminary validation of a paediatric-targeted MRI scoring system for the assessment of disease activity and damage in juvenile idiopathic arthritis , 2010, Annals of the rheumatic diseases.
[62] J. Fritz,et al. Spectrum of magnetic resonance imaging appearances of juvenile temporomandibular joints (tmj) in non-rheumatic children , 2009, Acta radiologica.
[63] M. Boers,et al. The OMERACT-ICF Reference Group: Integrating the ICF into the OMERACT Process: Opportunities and Challenges , 2009, The Journal of Rheumatology.
[64] Karl Johnson. Imaging of juvenile idiopathic arthritis , 2006, Pediatric Radiology.
[65] S. Chinn,et al. Intraclass correlation coefficient and outcome prevalence are associated in clustered binary data. , 2005, Journal of clinical epidemiology.
[66] Barbara Di Eugenio,et al. Squibs and Discussions: The Kappa Statistic: A Second Look , 2004, CL.
[67] K. Gil,et al. Daily pain and symptoms in children with polyarticular arthritis. , 2003, Arthritis and rheumatism.
[68] M. Østergaard,et al. Importance of timing of post-contrast MRI in rheumatoid arthritis: what happens during the first 60 minutes after IV gadolinium-DTPA? , 2001, Annals of the rheumatic diseases.
[69] A. Oestreich,et al. Knee in early juvenile rheumatoid arthritis: MR imaging findings. , 2001, Radiology.
[70] R. Moineddin,et al. Qualitative and semi-quantitative assessment of temporomandibular joint MRI protocols for juvenile idiopathic arthritis at 1.5 and 3.0T. , 2018, European journal of radiology.
[71] L. Cronbach,et al. Construct validity in psychological tests. , 1955, Psychological bulletin.