Panagiotopoulos Elias C, Kallivokas Alkiviadis G, Koulioumpas Ioannis, Mouzakis Dionysios E
Department of Orthopaedics, Patras University Hospital, Rion 26504, Greece.
Clin Biomech (Bristol). 2007 Aug;22(7):856-60. doi: 10.1016/j.clinbiomech.2007.04.007. Epub 2007 Jun 13.
Zirconium ceramics are one of the most controversial prosthetic biomaterials with good mechanical properties on the one hand, but early failure incidents on the other hand. A case of an early failure of zirconia femoral head in a 73-year-old clergy man, who underwent a total hip arthroplasty 28 months before, is reported.
The retrieved femoral head fragments, during revision surgery, were studied using scanning electron microscopy.
Although a randomly occurred fracture without biomechanical significance can be a possible explanation, the collected data give evidence that initial non-critical microcracks or crazes due to contact stresses or strain mismatches or both between the ceramic head and the metallic tapered neck of the prosthesis led to the fatigue of the material. The final outcome was a catastrophic fracture of the head.
Fixation of the neck into the zirconia head, with no mismatching or stress differences, would solve the fatigue-induced head destruction.
锆陶瓷是最具争议的修复生物材料之一,一方面具有良好的机械性能,但另一方面又存在早期失效事件。本文报道了一例73岁神职人员的氧化锆股骨头早期失效病例,该患者在28个月前接受了全髋关节置换术。
在翻修手术中,使用扫描电子显微镜对取出的股骨头碎片进行研究。
虽然随机发生的无生物力学意义的骨折可能是一种解释,但收集到的数据表明,由于陶瓷头与假体金属锥形颈之间的接触应力或应变不匹配或两者兼而有之,导致最初的非关键性微裂纹或 crazes,进而导致材料疲劳。最终结果是股骨头发生灾难性骨折。
将颈部固定到氧化锆头中,不存在不匹配或应力差异,将解决疲劳导致的头部破坏问题。