首页> 外文会议>International conference on processing manufacturing of advanced materials;THERMEC 2009 >Dielectric Properties in Fresh Trabecular Bone Tissue from 1MHz to 1000MHz: A Fast and Non Destructive Quality Evaluation Technique
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Dielectric Properties in Fresh Trabecular Bone Tissue from 1MHz to 1000MHz: A Fast and Non Destructive Quality Evaluation Technique

机译:从1MHz到1000MHz的新鲜小梁骨组织的介电性能:一种快速且无损的质量评估技术

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The increasing research on development of novel bio-materials has resulted in several studies on non-destructive evaluation methods for characterizing these materials and the biological materials receiving them. A broad range of techniques are available. As an alternative tool, electrical impedance spectroscopy, has become a widely used, non destructive and low cost technique in material quality evaluation. Particularly in bones, it has also been demonstrated that mechanical characteristics are strongly correlated to dielectric properties. In this work, non destructive estimation (the same samples can be tested using other techniques) of the dielectric properties of fresh trabecular bones (layered lossy structure) using coaxial probes is analyzed from 1MHz to 10MHz (in frequency domain) and from 80MHz to 1GHz (in both, frequency and time domain). Frequency domain system identification is used to build the estimation in the low frequency range and an orthonormal based identification approach, for the high frequency data. Comments on conductive samples, non Debye dielectrics and polarization effects are added. The methodology was applied to a particular human sample population of aged adult femur heads and results are presented here. A comparison with destructive test, in which the samples were machined into cylinders of 7mm diameter, is also performed.
机译:对新型生物材料的开发的不断发展的研究导致了对用于表征这些材料和接收它们的生物材料的非破坏性评估方法的若干研究。可以使用多种技术。作为一种替代工具,电阻抗光谱法已成为材料质量评估中一种广泛使用,无损且低成本的技术。特别是在骨骼中,还已经证明机械特性与介电性能密切相关。在这项工作中,使用同轴探针在1MHz至10MHz(在频域)和80MHz至1GHz的范围内对新鲜小梁骨(层状有损结构)的介电特性进行了非破坏性评估(可以使用其他技术测试相同的样品) (在频域和时域中)。频域系统识别用于在低频范围内建立估计,并使用基于正交的识别方法来建立高频数据。添加了有关导电样品,非德拜电介质和极化效应的注释。该方法已应用于特定的老年成年女性股骨头人类样本群体,结果在此处显示。还与破坏性测试进行了比较,在破坏性测试中,样品被加工成直径7mm的圆柱体。

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