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A Novel Dynamic Mechanical Testing Technique for Reverse Shoulder Replacements

机译:一种新型动态机械检测技术,用于逆转肩部替代品

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摘要

In vitro mechanical testing of orthopedic implants provides information regarding their mechanical performance under simulated biomechanical conditions. Current in vitro component stability testing methods for reverse shoulder implants are based on anatomical shoulder designs, which do not capture the dynamic nature of these loads. With glenoid component loosening as one of the most prevalent modes of failure in reverse shoulder replacements, it is important to establish a testing protocol with a more realistic loading regime. This paper introduces a novel method of mechanically testing reverse shoulder implants, using more realistic load magnitudes and vectors, than is currently practiced. Using a custom made jig setup within an Instron mechanical testing system, it is possible to simulate the change in magnitude and direction of the joint load during arm abduction. This method is a step towards a more realistic testing protocol for measuring reverse shoulder implant stability.
机译:整形外科植入物的体外机械测试提供了关于模拟生物力学条件下的机械性能的信息。 反向肩部植入物的电流在体外组分稳定性试验方法基于解剖肩部设计,其不会捕获这些负载的动态性质。 随着眼盂元件作为反向肩部置换中最普遍的故障模式之一,重要的是建立具有更现实的装载制度的测试协议。 本文介绍了一种机械测试反向肩部植入物的新方法,使用更现实的负载量大和向量,而不是目前实践。 在Instron机械测试系统中使用定制的JIG设置,可以在ARM绑架期间模拟关节载荷的大小和方向的变化。 该方法是朝着测量反向肩部植入稳定性的更现实的测试方案的步骤。

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