Bishop N E, Schneider E, Ito K
AO Research Institute, Clavadelerstrasse, 7270, Davos Platz, Switzerland.
Med Eng Phys. 2003 May;25(4):335-40. doi: 10.1016/s1350-4533(02)00250-3.
A novel two degrees-of-freedom external fixator that can accurately control interfragmentary mechanical conditions over an ovine tibial osteotomy is presented. The device can apply either axial or torsional motion, to investigate mechano-transduction mechanisms in fracture healing. The device was bench-tested over a range of gap stiffnesses, for its ability to apply pure axial or torsional motions, control interfragmentary strain magnitudes and to measure stiffness over the gap. The experiments reveal very little cross-coupling between axial and torsional displacements, although some transverse displacement occurs for both degrees-of-freedom. The mean interfragmentary strain can also be accurately controlled, but with some variation over the gap (due to coupled transverse displacement error). Interfragmentary stiffness measurements are accurate up to gap stiffnesses corresponding to bony bridging. This characterisation study has shown that the system is adequate to control and measure the mechanical conditions in a fracture healing experiment.
介绍了一种新型两自由度外固定器,它能够精确控制绵羊胫骨截骨处的骨折块间力学条件。该装置可以施加轴向或扭转运动,以研究骨折愈合中的机械转导机制。该装置在一系列间隙刚度范围内进行了台架测试,测试其施加纯轴向或扭转运动的能力、控制骨折块间应变大小以及测量间隙刚度的能力。实验表明,轴向和扭转位移之间的交叉耦合非常小,尽管两个自由度都会出现一些横向位移。骨折块间平均应变也可以精确控制,但间隙上存在一些变化(由于耦合横向位移误差)。骨折块间刚度测量在对应于骨桥接的间隙刚度范围内是准确的。这项特性研究表明,该系统足以在骨折愈合实验中控制和测量力学条件。