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The Bone & Joint Journal
Vol. 106-B, Issue 5 Supple B | Pages 47 - 53
1 May 2024
Jones SA Parker J Horner M

Aims

The aims of this study were to determine the success of a reconstruction algorithm used in major acetabular bone loss, and to further define the indications for custom-made implants in major acetabular bone loss.

Methods

We reviewed a consecutive series of Paprosky type III acetabular defects treated according to a reconstruction algorithm. IIIA defects were planned to use a superior augment and hemispherical acetabular component. IIIB defects were planned to receive either a hemispherical acetabular component plus augments, a cup-cage reconstruction, or a custom-made implant. We used national digital health records and registry reports to identify any reoperation or re-revision procedure and Oxford Hip Score (OHS) for patient-reported outcomes. Implant survival was determined via Kaplan-Meier analysis.


The Journal of Bone & Joint Surgery British Volume
Vol. 87-B, Issue 6 | Pages 749 - 754
1 Jun 2005
Giannoudis PV Parker J Wilcox MH


The Journal of Bone & Joint Surgery British Volume
Vol. 68-B, Issue 4 | Pages 528 - 533
1 Aug 1986
Lau J Parker J Hsu L Leong J

A retrospective study was made of the results of surgical treatment of subluxation or dislocation of the hip in patients who had suffered from poliomyelitis. Good results were achieved in 46% and satisfactory results in 24%. The key factors for success are muscle balance, the femoral neck-shaft and anteversion angles, and the acetabular geometry. Iliopsoas transfer can augment the hip abductor power by an average of one MRC grade. Varus derotation femoral osteotomy is important to re-establish a normal neck-shaft angle and anteversion. The results of pelvic osteotomy are variable and the importance of a posterior acetabular defect is emphasised.