Fidler J, Guimaraes L, Einstein D (2009) MR imaging of the small bowel. Radiographics 29:1181–1225
Sinha R, Murphy P, Hawker P et al (2009) Role of MRI in Crohn’s disease. Clin Radiol 64:341–352
Radmard AR, Amouei M, Torabi A et al (2024) MR enterography in ulcerative colitis: beyond endoscopy. Radiographics 44:e230131
Rimola J, Ordás I, Rodriguez S et al (2011) Magnetic resonance imaging for evaluation of Crohn’s disease: validation of parameters of severity and quantitative index of activity. Inflamm Bowel Dis 17:1759–1768
Capozzi N, Ordás I, Fernandez-Clotet A et al (2020) Validation of the simplified magnetic resonance index of activity [sMARIA] without gadolinium-enhanced sequences for Crohn’s disease. J Crohns Colitis 14:1074–1081
Steward M, Punwani S, Proctor I et al (2012) Non-perforating small bowel Crohn’s disease assessed by MRI enterography: derivation and histopathological validation of an MR-based activity index. Eur J Radiol 81:2080–2088
European Crohn’s and Colitis Organisation [ECCO] and the European Society of Gastrointestinal and Abdominal Radiology [ESGAR] (2019). ECCO-ESGAR guideline for diagnostic assessment in IBD. Part 2: IBD scores and general principles and technical aspects. J Crohns Colitis 13: 273-84
Dillman J, Ata N, Towbin A et al (2023) The simplified MR index of activity score in pediatric small-bowel Crohn disease: an interreader agreement and responsiveness study. AJR Am J Roentgenol 220:126–133
Pomerri F, Al Bunni F, Zuliani M et al (2017) Assessing pediatric ileocolonic Crohn’s disease activity based on global MR enterography scores. Eur Radiol 27:1044–1051
D’Amico F, Chateau T, Laurent V et al (2020) Which MRI score and technique should be used for assessing Crohn’s disease activity? J Clin Med 9:1691
Article PubMed PubMed Central Google Scholar
Tielbeek J, Makanyanga J, Bipat S et al (2013) Grading Crohn disease activity with MRI: interobserver variability of MRI features, MRI scoring of severity, and correlation with Crohn disease endoscopic index of severity. AJR Am J Roentgenol 201:1220–1228
Rozendorn N, Amitai M, Eliakim R et al (2018) A review of magnetic resonance enterography-based indices for quantification of Crohn’s disease inflammation. Therap Adv Gastroenterol. https://doi.org/10.1177/1756284818765956
Article PubMed PubMed Central Google Scholar
Menys A, Helbren E, Makanyanga J et al (2013) Small bowel strictures in Crohn’s disease: a quantitative investigation of intestinal motility using MR enterography. Neurogastroenterol Motil 25:967-e775
Menys A, Atkinson D, Odille F et al (2012) Quantified terminal ileal motility during MR enterography as a potential biomarker of Crohn’s disease activity: a preliminary study. Eur Radiol 22:2494–2501
Hahnemann M, Nensa F, Kinner S (2015) Improved detection of inflammatory bowel disease by additional automated motility analysis in magnetic resonance imaging. Invest Radiol 50:67–72
Hahnemann M, Nensa F, Kinner S et al (2015) Quantitative assessment of small bowel motility in patients with Crohn’s disease using dynamic MRI. Neurogastroenterol Motil 27:841–848
Gollifer R, Menys A, Makanyanga J et al (2018) Relationship between MRI quantified small bowel motility and abdominal symptoms in Crohn’s disease patients-a validation study. Br J Radiol 91:20170914
Article PubMed PubMed Central Google Scholar
Menys A, Puylaert C, TuteinNolthenius C et al (2018) Quantified terminal ileal motility during MR enterography as a biomarker of Crohn disease activity: prospective multi-institution study. Radiology 289:428–435
Menys A, Makanyanga J, Plumb A et al (2016) Aberrant motility in unaffected small bowel is linked to inflammatory burden and patient symptoms in Crohn’s disease. Inflamm Bowel Dis 22:424–432
Gollifer R, Menys A, Plumb A et al (2019) Automated versus subjective assessment of spatial and temporal MRI small bowel motility in Crohn’s disease. Clin Radiol 74:814e9-814.e19 19
Cococcioni L, Fitzke H, Menys A et al (2021) Quantitative assessment of terminal ileum motility on MR enterography in Crohn disease: a feasibility study in children. Eur Radiol 31:775–784
Dillman J, Tkach J, Imbus R et al (2022) MRI-based characterization of intestinal motility in children and young adults with newly diagnosed ileal Crohn disease treated by biologic therapy: a controlled prospective study. AJR Am J Roentgenol 219:655–664
Article PubMed PubMed Central Google Scholar
Plumb A, Menys A, Russo E et al (2015) Magnetic resonance imaging-quantified small bowel motility is a sensitive marker of response to medical therapy in Crohn’s disease. Aliment Pharmacol Ther 42:343–355
González-Suárez B, Rodriguez S, Ricart E et al (2018) Comparison of capsule endoscopy and magnetic resonance enterography for the assessment of small bowel lesions in Crohn’s disease. Inflamm Bowel Dis 24:775–780
Article PubMed PubMed Central Google Scholar
Prichard D, Hamilton Z, Savage T et al (2019) Capsule endoscopy complements magnetic resonance enterography and endoscopy in evaluating small bowel Crohn’s disease. J Can Assoc Gastroenterol 3:279–287
PubMed PubMed Central Google Scholar
Hyams J, Ferry G, Mandel F et al (1991) Development and validation of a pediatric Crohn’s disease activity index. J Pediatr Gastroenterol Nutr 12:439–447
Turner D, Otley A, Mack D et al (2007) Development, validation, and evaluation of a pediatric ulcerative colitis activity index: a prospective multicenter study. Gastroenterology 133:423–432
Hyams J, Markowitz J, Otley A et al (Pediatric Inflammatory Bowel Disease Collaborative Research Group) (2005). Evaluation of the pediatric Crohn disease activity index: a prospective multicenter experience. Pediatr Gastroenterol Nutr 41:416–21
Odille F, Menys A, Ahmed A et al (2012) Quantitative assessment of small bowel motility by nonrigid registration of dynamic MR images. Magn Reson Med 68:783–793
Harris P, Taylor R, Thielke R et al (2009) Research electronic data capture (REDCap) – a metadata-driven methodology and workflow process for providing translational research informatics support. J Biomed Inform 42:377–381
Harris P, Taylor R, Minor B (2019) The REDCap consortium: building an international community of software partners. J Biomed Inform 95:103208
Article PubMed PubMed Central Google Scholar
R Core Team. A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria, URL https://www.R-project.org/. Accessed 9 July 2024
Stevenson M, Sergeant E (2023). epiR version 2.0.60. https://mvs.unimelb.edu.au/research/groups/veterinary-epidemiology-melbourne. Accessed 9 July 2024
de Vet H, Mullender M, Eekhout I (2018) Specific agreement on ordinal and multiple nominal outcomes can be calculated for more than two raters. J Clin Epidemiol 96:47–53
Datta D (2017). blandr: a Bland-Altman method comparison package for R. https://github.com/deepankardatta/blandr. Accessed 9 July 2024
Ruess L, Blask AR, Bulas DI et al (2000) Inflammatory bowel disease in children and young adults: correlation of sonographic and clinical parameters during treatment. AJR Am J Roentgenol 175(1):79–84
Morani A, Smith E, Ganeshan D, Dillman J (2015) Diffusion-weighted MRI in pediatric inflammatory bowel disease. AJR Am J Roentgenol 204:1269–1277
Church P, Greer M, Cytter-Kuint R et al (2017) Magnetic resonance enterography has good inter-rater agreement and diagnostic accuracy for detecting inflammation in pediatric Crohn disease. Pediatr Radiol 47:565–575
van Wassenaer E, Benninga M, van Limbergen J et al (2022) Intestinal ultrasound in pediatric inflammatory bowel disease: promising, but work in progress. Inflamm Bowel Dis 28:783–787
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