Rotsch Christian, Kemter-Esser Karoline, Dohndorf Johanna, Knothe Marcel, Drossel Welf-Guntram, Heyde Christoph-Eckhard
Fraunhofer Institute for Machine Tools and Forming Technology IWU, 01187 Dresden, Germany.
University of Leipzig Medical Center, Orthopaedic, Trauma and Plastic Surgery Clinic, University of Leipzig, 04103 Leipzig, Germany.
Bioengineering (Basel). 2024 Jan 12;11(1):75. doi: 10.3390/bioengineering11010075.
Hip implants have a modular structure which enables patient-specific adaptation but also revision of worn or damaged friction partners without compromising the implant-bone connection. To reduce complications during the extraction of ceramic inlays, this work presents a new approach of a shape-memory-alloy-actuator which enables the loosening of ceramic inlays from acetabular hip cups without ceramic chipping or damaging the metal cup. This technical in vitro study exam-ines two principles of heating currents and hot water for thermal activation of the shape-memory-alloy-actuator to generate a force between the metal cup and the ceramic inlay. Mechanical tests concerning push-in and push-out forces, deformation of the acetabular cup according to international test standards, and force generated by the actuator were generated to prove the feasibility of this new approach to ceramic inlay revision. The required disassembly force for a modular acetabular device achieved an average value of 602 N after static and 713 N after cyclic loading. The actuator can provide a push-out force up to 1951 N. In addition, it is shown that the necessary modifications to the implant modules for the implementation of the shape-memory-actuator-system do not result in any change in the mechanical properties compared to conventional systems.
髋关节植入物具有模块化结构,这不仅能够实现针对患者的适配,还能在不影响植入物与骨骼连接的情况下,对磨损或损坏的摩擦部件进行翻修。为减少陶瓷嵌体取出过程中的并发症,本文提出了一种形状记忆合金驱动器的新方法,该方法能够使陶瓷嵌体从髋臼髋关节杯中松动,而不会出现陶瓷碎片或损坏金属杯的情况。这项体外技术研究考察了用于热激活形状记忆合金驱动器以在金属杯和陶瓷嵌体之间产生力的两种原理,即加热电流和热水。根据国际测试标准,进行了关于推入和推出力、髋臼杯变形以及驱动器产生的力的力学测试,以证明这种陶瓷嵌体翻修新方法的可行性。模块化髋臼装置所需的拆卸力在静态加载后平均值为602 N,循环加载后为713 N。该驱动器可提供高达1951 N的推出力。此外,研究表明,与传统系统相比,为实施形状记忆驱动器系统而对植入物模块进行的必要修改不会导致机械性能发生任何变化。