Department of Orthopaedics and Traumatology Baskent University School of Medicine, Zubeyde Hanim Research and Medical Center, Izmir, Turkey.
Department of Orthopaedics and Traumatology, Dokuz Eylul University School of Medicine, Izmir, Turkey.
J Arthroplasty. 2014 Apr;29(4):836-42. doi: 10.1016/j.arth.2013.09.004. Epub 2013 Oct 4.
Safe reduction of the femoral head into the true acetabulum requires a certain amount of femoral shortening in patients with high dislocation of the hip. In subtrochanteric shortening applications, to reduce complications it is necessary to maintain a stable fixation at the osteotomy line. The purpose of this study is to investigate frequently used methods from a biomechanical point of view. Four osteotomy groups were created with composite femurs to investigate subtrochanteric osteotomies; transverse, oblique, z-subtrochanteric and double Chevron. All loading tests were carried out with two implant types both with and without strut graft and cable fixation. No single inherent feature increasing the stability of the investigated osteotomy types was found. Additionally graft application did not have a significant contribution to stability.
为了将股骨头安全地复位到真髋臼中,对于髋关节高位脱位的患者,需要进行一定程度的股骨短缩。在转子下缩短应用中,为了减少并发症,有必要在骨切线上保持稳定的固定。本研究的目的是从生物力学的角度研究常用的方法。通过复合股骨创建了 4 个截骨组,研究转子下截骨术,包括横断、斜行、Z 形转子下和双 Chevron 截骨术。所有的加载试验都是用两种植入物类型进行的,既有不带支柱移植物和缆线固定的,也有带的。没有发现单一的固有特征可以增加所研究的截骨类型的稳定性。此外,移植物的应用对稳定性没有显著贡献。