The IDEAL classification system
a new method for classifying fractures of the distal extremity of the radius – description and reproducibility
Keywords:
Colles’ fracture, Classification, Wrist, Radius fractures, Reproducibility of resultsAbstract
CONTEXT AND OBJECTIVE: There is no consensus concerning which classification for distal radius fractures is best and the existing methods present poor reproducibility. This study aimed to describe and assess the reproducibility of the new IDEAL classification, and to compare it with widely used systems. DESIGN AND SETTING: Reproducibility study, Hand Surgery Section, Universidade Federal de São Paulo. METHODS: The IDEAL classification and its evidence-based rationale are presented. Sixty radiographs (posteroanterior and lateral) from patients with distal radius fractures were classified by six examiners: a hand surgery specialist, a hand surgery resident, an orthopedic generalist, an orthopedic resident and two medical students. Each of them independently assessed the radiographs at three different times. We compared the intra and interobserver concordance of the IDEAL, AO, Frykman and Fernandez classifications using Cohen’s kappa (κ) (for two observers) and Fleiss’s κ (for more than two observers). RESULTS: The concordance was high for the IDEAL classification (κ = 0.771) and moderate for Frykman (κ = 0.556), Fernandez (κ = 0.671) and AO (κ = 0.650). The interobserver agreement was moderate for the IDEAL classification (κ = 0.595), but unsatisfactory for Frykman (κ = 0.344), Fernandez (κ = 0.496) and AO (κ = 0.343). CONCLUSION: The reproducibility of the IDEAL classification was better than that of the other systems analyzed, thus making the IDEAL system suitable for application. Complementary studies will confirm whether this classification system makes adequate predictions for therapy and prognosis.
Downloads
References
Baron JA, Barrett JA, Karagas MR. The epidemiology of peripheral fractures. Bone. 1996;18(3 Suppl):209S-213S.
Fernandez DL, Jupiter J. Fractures of the distal radius. 2nd edition. New York: Springer; 2002.
Róbertsson GO, Jónsson GT, Sigurjónsson K. Epidemiology of distal radius fractures in Iceland in 1985. Acta Orthop Scand. 1990;61(5):457-9.
Ilyas AM, Jupiter JB. Distal radius fractures--classification of treatment and indications for surgery. Orthop Clin North Am. 2007;38(2):167-73.
The classic. On the fracture of the carpal extremity of the radius. Abraham Colles, Edinburgh Med Surg J., 1814. Clin Orthop Relat Res. 1972;83:3-5.
Pouteau C. Oeuvres posthumes de M. Pouteau: memóire, contenant quelques réflexions sur quelques fractures de l’avant-bras, sur les luxations du incomplèttes poignet et sur lateral epicondylitis diastasis. Paris: Ph. Pierres; 1793.
Goyrand G. Mémoire sur les fractures de l’extremité inférieure du radius qui simulent les luxations du poignet. Gazette de Medicine. 1832;3:664-7.
Fernandez DL, Jupiter JB. Fractures of the distal radius. New York: Springer-Verlag; 1996.
Gartland JJ Jr, Werley CW. Evaluation of healed Colles’ fractures. J Bone Joint Surg Am. 1951;33A(4):895-907.
Lindstrom A. Fractures of the distal end of the radius. A clinical and statistical study of end results. Acta Orthop Scand Suppl. 1959;41:1-118.
Frykman G. Fracture of the distal radius including sequelae-- shoulder-hand-finger syndrome, disturbance in the distal radio-ulnar joint and impairment of nerve function. A clinical and experimental study. Acta Orthop Scand. 1967;Suppl 108:3+.
Kreder HJ, Hanel DP, McKee M, et al. Consistency of AO fracture classification for the distal radius. J Bone Joint Surg Br. 1996;78(5):726-31.
van Leerdam RH, Souer JS, Lindenhovius AL, Ring DC. Agreement between Initial Classification and Subsequent Reclassification of Fractures of the Distal Radius in a Prospective Cohort Study. Hand (NY). 2010;5(1):68-71.
Fernandez DL. Distal radius fracture: the rationale of a classification. Chir Main. 2001;20(6):411-25.
Belloti JC, Tamaoki MJ, Franciozi CE, et al. Are distal radius fracture classifications reproducible? Intra and interobserver agreement. Sao Paulo Med J. 2008;126(3):180-5.
Martin JS, Marsh JL. Current classification of fractures. Rationale and utility. Radiol Clin North Am. 1997;35(3):491-506.
Karanicolas PJ, Bhandari M, Kreder H, et al. Evaluating agreement: conducting a reliability study. J Bone Joint Surg Am. 2009;91 Suppl 3:99-106.
Belloti JC, Santos JB, Atallah AN, Albertoni WM, Faloppa F. Fractures of the distal radius (Colles’ fracture). Sao Paulo Med J. 2007;125(3):132-8.
Ploegmakers JJ, Mader K, Pennig D, Verheyen CC. Four distal radial fracture classification systems tested amongst a large panel of Dutch trauma surgeons. Injury. 2007;38(11):1268-72.
Fleiss JL, Cohen J, Everitt BS. Large sample standard errors of kappa and weighted kappa. Psychological Bulletin. 1969;72(5):323-
Available from: http://psycnet.apa.org/index.cfm?fa=buy. optionToBuy&id=1970-01528-001. Accessed in 2012 (Sep 25).
Landis JR, Koch GG. The measurement of observer agreement for categorical data. Biometrics. 1977;33(1):159-74.
Koch GG, Landis JR, Freeman JL, Freeman DH Jr, Lehnen RC. A general methodology for the analysis of experiments with repeated measurement of categorical data. Biometrics. 1977;33(1):133-58.
Cooney WP. Fractures of the distal radius. A modern treatment-based classification. Orthop Clin North Am. 1993;24(2):211-6.
Fernández DL. Fractures of the distal radius: operative treatment. Instr Course Lect. 1993;42:73-88.
Mackenney PJ, McQueen MM, Elton R. Prediction of instability in distal radial fractures. J Bone Joint Surg Am. 2006;88(9):1944-51.
Nesbitt KS, Failla JM, Les C. Assessment of instability factors in adult distal radius fractures. J Hand Surg Am. 2004;29(6):1128-38.
Bradway JK, Amadio PC, Cooney WP. Open reduction and internal fixation of displaced, comminuted intra-articular fractures of the distal end of the radius. J Bone Joint Surg Am. 1989;71(6):839-47.
Lafontaine M, Delince P, Hardy D, Simons M. L’instabilité des fractures de l’extrémité inférieure du radius: à propos d’une série de 167 cas. [Instability of fractures of the lower end of the radius: apropos of a series of 167 cases]. Acta Orthop Belg. 1989;55(2):203-16.
Lafontaine M, Hardy D, Delince P. Stability assessment of distal radius fractures. Injury. 1989;20(4):208-10.
Belloti J, Moraes VY, Albers MB, Faloppa F, Dos Santos JB. Does an ulnar styloid fracture interfere with the results of a distal radius fracture? J Orthop Sci. 2010;15(2):216-22.
Andersen DJ, Blair WF, Steyers CM Jr., et al. Classification of distal radius fractures: an analysis of interobserver reliability and intraobserver reproducibility. J Hand Surg Am. 1996;21(4):574-82.
Illarramendi A, González Della Valle A, Segal E, et al. Evaluation of simplified Frykman and AO classifications of fractures of the distal radius. Assessment of interobserver and intraobserver agreement. Int Orthop. 1998;22(2):111-5.