Naidu S H, Cuckler J M, Burkholder T, Ducheyne P
Department of Orthopaedic Surgery, Pennsylvania State University, Hershey, USA.
Am J Orthop (Belle Mead NJ). 1996 Dec;25(12):829-34.
A versatile modular hip system was used to evaluate the initial stability of a cementless femoral stem in anatomically consistent composite bones. Four implant bone configurations of varying proximal and distal fit/fill were tested. The implanted femurs were tested on an Instron 1331 materials testing machine in neutral loading and flexion loading; both translational micromotions and rotations of the implant relative to the bone were recorded on all three axes of motion, accounting for all 6 degrees of freedom of joint motion. Implants were then sectioned, and both endosteal canal fit and intramedullary canal fill were measured. Results indicate that (1) loading the implant in flexion by out-of-plane forces significantly increases both relative translation and rotation at the interface, (2) increasing the proximal fit reduces implant rotation about its longitudinal axis in flexion loading and (3) increasing the distal canal fit and fill increases prosthesis rotation about its longitudinal axis in flexion loading. These results indicate that the femoral stem is more unstable in out-of-plane loading, such as during stair climbing, and that increasing the proximal fit may enhance the initial rotational stability of an uncemented femoral stem.
一种通用模块化髋关节系统被用于评估解剖结构一致的复合骨中无骨水泥股骨柄的初始稳定性。测试了四种近端和远端适配/填充情况不同的植入物-骨配置。将植入股骨在英斯特朗1331材料试验机上进行中立加载和屈曲加载测试;记录植入物相对于骨在所有三个运动轴上的平移微动和旋转,涵盖关节运动的所有六个自由度。然后将植入物切片,测量骨内膜管适配情况和髓内管填充情况。结果表明:(1)通过平面外力使植入物处于屈曲状态会显著增加界面处的相对平移和旋转;(2)增加近端适配可减少屈曲加载时植入物绕其纵轴的旋转;(3)增加远端管适配和填充会增加屈曲加载时假体绕其纵轴的旋转。这些结果表明,在平面外加载(如爬楼梯时)时股骨柄更不稳定,并且增加近端适配可能会增强无骨水泥股骨柄的初始旋转稳定性。