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Uncertainty quantification of the optimal stimulation area in an electro-stimulative hip revision system

机译:电刺激髋关节翻修系统中最佳刺激区域的不确定度量化

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Electro-stimulative hip revision systems accelerate the bone growth around the implant and are capable of reducing the number of side effects such as aseptic implant loosening. A computational model was developed to determine the optimal electrode arrangement for such a system, which is currently under development. The optimization process depends on the electrical properties of bone material and the used bone substitute, which are subject to uncertainty in literature and its production process, respectively. To quantify the influence of these uncertain parameters on the optimal stimulation ratio (OSR), the computationally effective non-intrusive polynomial chaos technique was applied. The results indicate that the conductivity of bone substitute is most sensitive to the OSR, while its uncertainty was comparatively small compared to that of the uncertain parameters.
机译:电刺激髋关节翻修系统可加速植入物周围的骨骼生长,并能够减少诸如无菌植入物松动之类的副作用。目前正在开发一种计算模型,以确定用于这种系统的最佳电极布置。优化过程取决于骨骼材料的电特性和所用的骨骼替代物,这分别受到文献及其生产工艺的不确定性的影响。为了量化这些不确定参数对最佳刺激率(OSR)的影响,应用了计算有效的非侵入式多项式混沌技术。结果表明,骨替代物的电导率对OSR最敏感,而与不确定参数相比,其不确定性相对较小。

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