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Orthopaedic Proceedings
Vol. 100-B, Issue SUPP_8 | Pages 5 - 5
1 May 2018
Calder P Koroma P Wright J Goodier D Taylor S Blunn G Moazen M
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Aim

To quantify the micro-motion at the fracture gap in a tibial fracture model stabilised with an external fixator.

Method

A surrogate model of a tibia and a cadaver leg were fractured and stabilised using a two-ring hexapod external fixator. They were tested initially under static loading and then subjected to vibration.


Orthopaedic Proceedings
Vol. 97-B, Issue SUPP_5 | Pages 15 - 15
1 May 2015
Laubscher M El-Tawil S Ibrahim I Mitchell C Smitham P Chen P Goodier D Gorjon J Richards R Taylor S Calder P
Full Access

Background:

Little is known about the forces carried by the Taylor Spatial Frame (TSF) hexapod fixator. Our aim was to measure the TSF resultant force and how this changed during the consolidation phase.

Method:

Five patients undergoing correction of tibial deformities were recruited. Measurements were taken at 2, 4, 8 and 12 weeks post-correction during various activities. Instrumented struts incorporating strain gauges measuring axial force were temporarily used each time. Strut forces and lengths were used to determine frame kinetics. The resultant axial fixator forces and moments were calculated relative to sitting. Ground reaction forces (GRF) were measured using the treadmill force plates.