Have a personal or library account? Click to login

Reliability of haemophilia early arthropathy detection with ultrasound (HEAD-US) in children: a comparative magnetic resonance imaging (MRI) study

Open Access
|Oct 2022

References

  1. Gualtierotti R, Solimeno LP, Peyvandi F. Hemophilic arthropathy: current knowledge and future perspectives. J Thromb Haemost 2021; 19: 2112-21. doi: 10.1111/jth.15444
  2. Plut D, Faganel Kotnik B, Preložnik Zupan I, Ključevšek D, Vidmar G, Snoj Ž, et al. Detection and evaluation of haemophilic arthropathy: which tools may be considered more reliable. Haemophilia 2021; 27: 156-63. doi: 10.1111/ hae.14153
  3. Pergantou H, Platokouki H, Matsinos G, Papakonstantinou O, Papadopoulos A, Xafaki P, et al. Assessment of the progression of haemophilic arthropathy in children. Haemophilia 2010; 16: 124-9. doi: 10.1111/j.1365-2516.2009.02109.x
  4. Kilcoyne RF, Nuss R. Radiological assessment of haemophilic arthropathy with emphasis on MRI findings. Haemophilia 2003; 9: 57-64. doi: 10.1046/j.1365-2516.9.s1.11.x
  5. Sierra Aisa C, Lucía Cuesta JF, Rubio Martínez A, Fernández Mosteirín N, Iborra Muñoz A, Abío Calvete M, et al. Comparison of ultrasound and magnetic resonance imaging for diagnosis and follow-up of joint lesions in patients with haemophilia. Haemophilia 2014; 20: e51-7. doi: 10.1111/ hae.12268
  6. Doria AS, Keshava SN, Mohanta A, Jarrin J, Blanchette V, Srivastava A, et al. Diagnostic accuracy of ultrasound for assessment of hemophilic arthropathy: MRI correlation. Am J Roentgenol 2015; 204: W336-47. doi: 10.2214/ AJR.14.12501
  7. Dela Corte-Rodriguez H, Rodriguez-Merchan EC, Jimenez-Yuste V. Point-of-care ultrasonography in orthopedic management of hemophilia: multiple uses of an effective tool. HSS J 2018; 14: 307-13. doi: 10.1007/s11420-018-9604-x
  8. Martinoli C, Casa Alberighi O Della, Di Minno G, Graziano E, Claudio Molinari A, Pasta G, et al. Development and definition of a simplified scanning procedure and scoring method for haemophilia early arthropathy detection with ultrasound (HEAD-US). Thromb Haemost 2013; 109: 1170-9. doi: 10.1160/ TH12-11-0874
  9. Di Minno MND, Iervolino S, Soscia E, Tosetto A, Coppola A, Schiavulli M, et al. Magnetic resonance imaging and ultrasound evaluation of “healthy” joints in young subjects with severe haemophilia A. Haemophilia 2013; 19: e167-73. doi: 10.1111/hae.12107
  10. Keshava SN, Gibikote SV, Mohanta A, Poonnoose P, Rayner T, Hilliard P, et al. Ultrasound and magnetic resonance imaging of healthy paediatric ankles and knees: a baseline for comparison with haemophilic joints. Haemophilia 2015; 21: e210-22. doi: 10.1111/hae.12614
  11. Soliman M, Daruge P, Dertkigil SSJ, De Avila Fernandes E, Negrao JR, de Aguiar Vilela Mitraud S, et al. Imaging of haemophilic arthropathy in growing joints: pitfalls in ultrasound and MRI. Haemophilia 2017; 23: 660-72. doi: 10.1111/hae.13249
  12. Samanta M, Mitra S, Samui PP, Mondal RK, Hazra A, Sabui TK. Evaluation of joint cartilage thickness in healthy children by ultrasound: an experience from a developing nation. Int J Rheum Dis 2018; 21: 2089-94. doi: 10.1111/1756-185X.13374
  13. Spannow A, Stenboeg E, Pfeiffer-Jensen M, Fiirgaard B, Haislund M, Ostergaard M, et al. Ultrasound and MRI measurements of joint cartilage in healthy children: a validation study. Ultraschall Med 2010; 32(Suppl 1): S110-6. doi: 10.1055/s-0029-1245374
  14. Sidharthan S, Yau A, Almeida BA, Shea KG, Greditzer HG, Jones KJ, et al. Patterns of articular cartilage thickness in pediatric and adolescent knees: a magnetic resonance imaging–based study. Arthrosc Sport Med Rehabil 2021; 3: e381-90. doi: 10.1016/j.asmr.2020.09.029
  15. Lundin B, Manco-Johnson ML, Ignas DM, Moineddin R, Blanchette VS, Dunn AL, et al. An MRI scale for assessment of haemophilic arthropathy from the International Prophylaxis Study Group. Haemophilia 2012; 18: 962-70. doi: 10.1111/j.1365-2516.2012.02883.x
  16. Chan YH. Biostatistics 104: correlational analysis. Singapore Med J 2005; 46: 153-60.
  17. Plut D, Kotnik BF, Zupan IP, Kljucevsek D, Vidmar G, Snoj Z, et al. Diagnostic accuracy of haemophilia early arthropathy detection with ultrasound (HEAD-US): a comparative magnetic resonance imaging (MRI) study. Radiol Oncol 2019; 53: 178-86. doi: 10.2478/raon-2019-0027
  18. Prasetyo M, Gatot D, Tulaar A, Pandelaki J, Bardosono S, Sukrisman L, et al. Association between US and MRI scores and correlations with urinary C-terminal telopeptide Type II collagen levels for early detection of hemophilic arthropathy of the knee. J Phys Conf Ser 2018; 1073: 042022. doi: 10.1088/1742-6596/1073/4/042022
  19. Prasetyo M, Mongan AE, Chozie NA, Prihartono J, Setiawan SI. Hemosiderin deposition evaluation in hemophilic ankle joints: association between US finding and gradient-recalled echo MR imaging sequence. Insights Imaging 2021; 12: 1-7. doi: 10.1186/s13244-021-01050-1
  20. Acharya SS, Schloss R, Dyke JP, Mintz DN, Christos P, Dimichele DM, et al. Power Doppler sonography in the diagnosis of hemophilic synovitis - a promising tool. J Thromb Haemost 2008; 6: 2055-61. doi: 10.1111/j.1538-7836.2008.03160.x
DOI: https://doi.org/10.2478/raon-2022-0040 | Journal eISSN: 1581-3207 | Journal ISSN: 1318-2099
Language: English
Page range: 471 - 478
Submitted on: Aug 23, 2022
Accepted on: Sep 4, 2022
Published on: Oct 20, 2022
Published by: Association of Radiology and Oncology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2022 Domen Plut, Barbara Faganel Kotnik, Luka Pusnik, Peter Slak, Ziga Snoj, Vladka Salapura, published by Association of Radiology and Oncology
This work is licensed under the Creative Commons Attribution 4.0 License.