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Long-term Follow-up of Van Nes Rotationplasty in Patients with Congenital Proximal Focal Femoral Deficiency

Overview
Journal Bone Joint J
Date 2013 Feb 1
PMID 23365028
Citations 16
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Abstract

Van Nes rotationplasty may be used for patients with congenital proximal focal femoral deficiency (PFFD). The lower limb is rotated to use the ankle and foot as a functional knee joint within a prosthesis. A small series of cases was investigated to determine the long-term outcome. At a mean of 21.5 years (11 to 45) after their rotationplasty, a total of 12 prosthetic patients completed the Short-Form (SF)-36, Faces Pain Scale-Revised, Harris hip score, Oswestry back pain score and Prosthetic Evaluation Questionnaires, as did 12 age- and gender-matched normal control participants. A physical examination and gait analysis, computerised dynamic posturography (CDP), and timed 'Up & Go' testing was also completed. Wilcoxon Signed rank test was used to compare each PFFD patient with a matched control participant with false discovery rate of 5%. There were no differences between the groups in overall health and well-being on the SF-36. Significant differences were seen in gait parameters in the PFFD group. Using CDP, the PFFD group had reduced symmetry in stance, and reduced end point and maximum excursions. Patients who had undergone Van Nes rotationplasty had a high level of function and quality of life at long-term follow-up, but presented with significant differences in gait and posture compared with the control group.

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References
1.
Hicks C, von Baeyer C, Spafford P, van Korlaar I, Goodenough B . The Faces Pain Scale-Revised: toward a common metric in pediatric pain measurement. Pain. 2001; 93(2):173-183. DOI: 10.1016/S0304-3959(01)00314-1. View

2.
Hillmann A, Rosenbaum D, Schroter J, Gosheger G, Hoffmann C, Winkelmann W . Electromyographic and gait analysis of forty-three patients after rotationplasty. J Bone Joint Surg Am. 2000; 82(2):187-96. DOI: 10.2106/00004623-200002000-00004. View

3.
Fowler E, Zernicke R, Setoguchi Y, Oppenheim W . Energy expenditure during walking by children who have proximal femoral focal deficiency. J Bone Joint Surg Am. 1996; 78(12):1857-62. DOI: 10.2106/00004623-199612000-00009. View

4.
Resnik L, Borgia M . Reliability of outcome measures for people with lower-limb amputations: distinguishing true change from statistical error. Phys Ther. 2011; 91(4):555-65. DOI: 10.2522/ptj.20100287. View

5.
Brazier J, Harper R, Jones N, OCathain A, Thomas K, Usherwood T . Validating the SF-36 health survey questionnaire: new outcome measure for primary care. BMJ. 1992; 305(6846):160-4. PMC: 1883187. DOI: 10.1136/bmj.305.6846.160. View