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Proof of Concept for the Detection of Local Pressure Marks in Prosthesis Sockets Using Structural Dynamics Measurement

机译:使用结构动力学测量检测假体插座中局部压痕的概念证明

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摘要

The wear comfort of a prosthesis is of great importance for amputee patients. The wear comfort can be affected by changes in the interface between the residual limb and prosthesis socket, which can be caused by time-dependent volume fluctuations of the tissue, leading to unwanted local pressure marks. The basis to ensure time-independent wear comfort of a prosthesis is to identify these changes. Common techniques for identifying these variations have a negative impact on the sensitive interface between the residual limb and prosthesis. The following paper contains a proof of concept for the detection of local pressure marks without affecting the described interface using structural dynamics measurements, exemplarily shown at a prosthetic socket for transfemoral amputees in a test bench scenario. The dynamical behaviour of the investigated system is analysed in the form of frequency response functions acquired for different pressure locations and preloads using an impact hammer for excitation and a triaxial acceleration sensor. The frequency response functions show major changes for the various boundary conditions with respect to their frequency-dependent compositions. The results demonstrate how the utilised method enables the identification of changes in local pressure marks regarding the variation of position and magnitude.
机译:假体的耐磨舒适性对截肢者患者具有重要意义。磨损舒适性可能受到残余肢体和假体插座之间的界面变化的影响,这可能是由组织的时间依赖的体积波动引起的,导致不需要的局部压力标记。确保假体的独立磨损舒适性的基础是识别这些变化。用于识别这些变化的常见技术对残留肢体和假体之间的敏感界面具有负面影响。以下纸张包含用于检测局部压力标记的概念证明,而不影响使用结构动态测量的所描述的界面,示例性地示出了在测试台式场景中的用于经违规程序的假体套接字。以用于激励和三轴加速度传感器的冲击锤获得的不同压力位置和预载的频率响应函数的频率响应函数的形式分析研究系统的动力学行为。频率响应函数对其依赖于频率的组合物的各种边界条件显示了各种边界条件的主要变化。结果表明,利用方法如何能够识别局部压力标记的变化,了解位置和幅度的变化。

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