Ali M S, French T A, Hastings G W, Rae T, Rushton N, Ross E R, Wynn-Jones C H
Hartshill Orthopaedic Hospital, Stoke-on-Trent, England.
J Bone Joint Surg Br. 1990 Jul;72(4):586-91. doi: 10.1302/0301-620X.72B4.2380209.
We compared the mechanical properties of carbon fibre composite bone plates with those of stainless steel and titanium. The composite plates have less stiffness with good fatigue properties. Tissue culture and small animal implantation confirmed the biocompatibility of the material. We also present a preliminary report on the use of the carbon fibre composite plates in 40 forearm fractures. All fractures united, 67% of them showing radiological remodelling within six months. There were no refractures or mechanical failures, but five fractures showed an unexpected reaction; this is discussed.
我们比较了碳纤维复合骨板与不锈钢和钛骨板的力学性能。复合骨板刚度较小,但具有良好的疲劳性能。组织培养和小动物植入实验证实了该材料的生物相容性。我们还给出了一份关于40例前臂骨折使用碳纤维复合骨板的初步报告。所有骨折均愈合,其中67%在六个月内显示出放射学重塑。没有再骨折或机械故障,但有五例骨折出现了意外反应;对此进行了讨论。