Bolland B J R F, New A M R, Madabhushi S P G, Oreffo R O C, Dunlop D G
Bone and Joint Research Group, Southampton University Hospitals, NHS Trust, Tremona Road, Southampton, SO16 6YD, UK.
J Bone Joint Surg Br. 2007 May;89(5):686-92. doi: 10.1302/0301-620X.89B5.18695.
The complications of impaction bone grafting in revision hip replacement includes fracture of the femur and subsidence of the prosthesis. In this in vitro study we aimed to investigate whether the use of vibration, combined with a perforated tamp during the compaction of morsellised allograft would reduce peak loads and hoop strains in the femur as a surrogate marker of the risk of fracture and whether it would also improve graft compaction and prosthetic stability. We found that the peak loads and hoop strains transmitted to the femoral cortex during graft compaction and subsidence of the stem in subsequent mechanical testing were reduced. This innovative technique has the potential to reduce the risk of intra-operative fracture and to improve graft compaction and therefore prosthetic stability.
髋关节翻修术中嵌压植骨的并发症包括股骨骨折和假体下沉。在这项体外研究中,我们旨在探讨在压实碎骨同种异体骨的过程中,使用振动并结合带孔压棒是否会降低股骨中的峰值负荷和环向应变,以此作为骨折风险的替代指标,以及这是否还会改善植骨压实和假体稳定性。我们发现,在随后的力学测试中,植骨压实和柄下沉过程中传递至股骨皮质的峰值负荷和环向应变降低了。这项创新技术有可能降低术中骨折的风险,并改善植骨压实,从而提高假体稳定性。