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利用超声导波预测骨强度。

Predicting bone strength with ultrasonic guided waves.

机构信息

Sorbonne Universités, UPMC Univ Paris 06, CNRS UMR 7371, INSERM UMR S1146, Laboratoire d'imagerie biomédicale, 15 rue de l'école de médecine, F-75006, Paris, France.

出版信息

Sci Rep. 2017 Mar 3;7:43628. doi: 10.1038/srep43628.

Abstract

Recent bone quantitative ultrasound approaches exploit the multimode waveguide response of long bones for assessing properties such as cortical thickness and stiffness. Clinical applications remain, however, challenging, as the impact of soft tissue on guided waves characteristics is not fully understood yet. In particular, it must be clarified whether soft tissue must be incorporated in waveguide models needed to infer reliable cortical bone properties. We hypothesize that an inverse procedure using a free plate model can be applied to retrieve the thickness and stiffness of cortical bone from experimental data. This approach is first validated on a series of laboratory-controlled measurements performed on assemblies of bone- and soft tissue mimicking phantoms and then on in vivo measurements. The accuracy of the estimates is evaluated by comparison with reference values. To further support our hypothesis, these estimates are subsequently inserted into a bilayer model to test its accuracy. Our results show that the free plate model allows retrieving reliable waveguide properties, despite the presence of soft tissue. They also suggest that the more sophisticated bilayer model, although it is more precise to predict experimental data in the forward problem, could turn out to be hardly manageable for solving the inverse problem.

摘要

最近的骨定量超声方法利用长骨的多模波导响应来评估皮质厚度和刚度等特性。然而,临床应用仍然具有挑战性,因为软组织对导波特性的影响尚未完全了解。特别是,必须阐明在推断可靠皮质骨特性所需的波导模型中是否必须包含软组织。我们假设可以应用反演程序使用自由板模型从实验数据中恢复皮质骨的厚度和刚度。该方法首先在一系列实验室控制的测量中进行验证,这些测量是在骨和软组织模拟体的组合上进行的,然后在体内测量中进行验证。通过与参考值进行比较来评估估计的准确性。为了进一步支持我们的假设,随后将这些估计值插入双层模型中以测试其准确性。我们的结果表明,尽管存在软组织,自由板模型仍可以恢复可靠的波导特性。它们还表明,尽管双层模型在正向问题中更精确地预测实验数据,但对于解决逆问题,它可能难以处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/628c/5335564/43a4da32e701/srep43628-f1.jpg

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