Prospective comparison of magnetic resonance imaging and computed tomography in diagnosing occult scaphoid fractures

1. Clementson, M, Björkman, A, Thomsen, NOB. Acute scaphoid fractures: guidelines for diagnosis and treatment. EFORT Open Rev 2020;26:96–103.
Google Scholar | Crossref2. Mallee, W, Doornberg, JN, Ring, D, et al. Comparison of CT and MRI for diagnosis of suspected scaphoid fractures. J Bone Joint Surg Am 2011;93:20–28.
Google Scholar | Crossref | Medline | ISI3. Chunara, MH, McLeavy, CM, Kesavanarayanan, V, et al. Current imaging practice for suspected scaphoid fracture in patients with normal initial radiographs: UK-wide national audit. Clin Radiol 2019;74:450–455.
Google Scholar | Crossref | Medline4. Smith, JE, House, RH, Gallagher, J, et al. The management of suspected scaphoid fractures in English hospitals. Eur J Emerg Med 2016;23:190–193.
Google Scholar | Crossref | Medline5. Wong, SBS, Peh, WCG. The role of magnetic resonance imaging in the evaluation of scaphoid fractures. J Med Radiat Sci 2019;66:3–4.
Google Scholar | Crossref | Medline6. National Institute for Health and Care Excellence . Fractures (non-complex): assessment and management. 2016. Available at: https://www.nice.org.uk/guidance/ng38 (last accessed 25 April 2020).
Google Scholar | Crossref7. Bäcker, HC, Wu, CH, Strauch, RJ. Systematic review of diagnosis of clinically suspected scaphoid fractures. J Wrist Surg 2020;9:81–89.
Google Scholar | Crossref | Medline8. Memarsadeghi, M, Breitenseher, MJ, Schaefer-Prokop, C, et al. Occult scaphoid fractures: comparison of multidetector CT and MR imaging – initial experience. Radiology 2006;240:169–176.
Google Scholar | Crossref | Medline | ISI9. Gäbler, C, Kukla, C, Breitenseher, MJ, et al. Diagnosis of occult scaphoid fractures and other wrist injuries: are repeated clinical examinations and plain radiographs still state of the art? Langenbecks Arch Surg 2001;386:150–154.
Google Scholar | Crossref | Medline10. Daniels, AM, Wyers, CE, Janzing, HMJ, et al. The interobserver reliability of the diagnosis and classification of scaphoid fractures using high-resolution peripheral quantitative CT. Bone Joint J 2020;102-B:478–484.
Google Scholar | Crossref | Medline11. Müller, FC, Gosvig, KK, Børgesen, H, et al. Dual-energy CT for suspected radiographically negative wrist fractures: a prospective diagnostic test accuracy study. Radiology 2020;296:596–602.
Google Scholar | Crossref | Medline12. Rua, T, Isaac, A, Vijayanathan, S, et al. Role of MRI in scaphoid injuries: the scaphoid magnetic resonance imaging in trauma (SMaRT) trial. Semin Musculoskelet Radiol 2019;23:1–18.
Google Scholar | Medline13. Jorgsholm, P, Thomsen, NOB, Besjakov, J, et al. The benefit of magnetic resonance imaging for patients with posttraumatic radial wrist tenderness. J Hand Surg Am 2013;38:29–33.
Google Scholar | Crossref | Medline14. Yin, Z-G, Zhang, J-B, Kan, S-L, et al. Diagnostic accuracy of imaging modalities for suspected scaphoid fractures. J Bone Joint Surg Br 2012;94:1077–1085.
Google Scholar | Crossref | Medline15. Andersson, JK, Andernord, D, Karlsson, J, et al. Efficacy of magnetic resonance imaging and clinical tests in diagnostics of wrist ligament injuries: a systematic review. Arthroscopy 2015;31:2014–2020.
Google Scholar | Crossref | Medline | ISI16. Clementson, M, Thomsen, N, Jørgsholm, P, et al. Is early mobilisation better than immobilisation in the treatment of wrist sprains? J Plast Surg Hand Surg 2016;50:156–160.
Google Scholar | Crossref | Medline17. De Zwart, AD, Beeres, FJ, Ring, D, et al. MRI as a reference standard for suspected scaphoid fractures. Br J Radiol 2012;85:1098–1101.
Google Scholar | Crossref | Medline | ISI18. Thavarajah, D, Syed, T, Shah, Y, et al. Does scaphoid bone bruising lead to occult fracture? A prospective study of 50 patients. Injury 2011;42:1303–1306.
Google Scholar | Crossref | Medline19. Jenkins, PJ, Slade, K, Huntley, JS, et al. A comparative analysis of the accuracy, diagnostic uncertainty and cost of imaging modalities in suspected scaphoid fractures. Injury 2008;39:768–774.
Google Scholar | Crossref | Medline | ISI20. Hansen, TB, Petersen, RB, Barckman, J, et al. Cost-effectiveness of MRI in managing suspected scaphoid fractures. J Hand Surg Eur Vol 2009;34:627–630.
Google Scholar | SAGE Journals | ISI21. Mack, MG, Keim, S, Balzer, JO, et al. Clinical impact of MRI in acute wrist fractures. Eur Radiol 2003;13:612–617.
Google Scholar | Crossref | Medline | ISI22. Brooks, S, Cicuttini, FM, Lim, S, et al. Cost effectiveness of adding magnetic resonance imaging to the usual management of suspected scaphoid fractures. Br J Sports Med 2005;39:75–79.
Google Scholar | Crossref | Medline23. Kelson, T, Davidson, R, Baker, T. Early MRI versus conventional management in the detection of occult scaphoid fractures: what does it really cost? A rural pilot study. J Med Radiat Sci 2016;63:9–16.
Google Scholar | Crossref | Medline | ISI24. Dorsay, TA, Major, NM, Helms, CA. Cost-effectiveness of immediate MR imaging versus traditional follow-up for revealing radiographically occult scaphoid fractures. AJR Am J Roentgenol 2001;177:1257–1263.
Google Scholar | Crossref | Medline | ISI

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