header advert
Orthopaedic Proceedings Logo

Receive monthly Table of Contents alerts from Orthopaedic Proceedings

Comprehensive article alerts can be set up and managed through your account settings

View my account settings

Visit Orthopaedic Proceedings at:

Loading...

Loading...

Full Access

THE EFFECT OF DISTAL FEMORAL CENTRALISERS ON THE CEMENT MANTLE



Abstract

The use of distal femoral centralising devices has been advocated in order to achieve an even cement mantle. This has been shown to improve femoral component survival but it is recognised that the presence of voids in the mantle has a deleterious effect on the mechanical strength of cement at laboratory testing and in terms of implant survival. The effect of centralising devices on the mantle in relation to the timing of stem insertion has not previously been investigated.

The purpose of this study is to assess the quality of the cement mantle in artificial bone using a polished taper stem with centralisation inserted at different stages of cement cure time and using different cements.

Three cement types were studied, 45‘saw bone’ models were used. The cementation was carried out in an operating theatre at constant temperature of 23.2Ê°C. The cement was mixed according to the manufacturers instructions and pressurised. Early, intermediate and late stem insertion times were determined for each cement type. The late group included stems with and without centralisers. Video recordings of the stem cement interface were made with a 4 mm endoscope after stem removal. Large cement mantle defects were noted in the ‘with centraliser’ group in 7 out of 15 late insertion times and all had small defects in the mantle. None of the ‘without centraliser’ group had cement mantle defects.

Based on our results we advise surgeons to be very aware of the timing of stem insertion when using centralisers.

Theses abstracts were prepared by Mr Peter Kay. Correspondence should be address to him at The Hip Centre, Wrightington Hospital, Appley Bridge, Wigan, Lancashire WN6 9EP.