Hughes Elinor R, Leighton Timothy G, White Paul R, Petley Graham W
Institute of Sound and Vibration Research, University of Southampton, Southampton, S017 IBJ, United Kingdom.
J Acoust Soc Am. 2007 Jan;121(1):568-74. doi: 10.1121/1.2387132.
The modeling of ultrasonic propagation in cancellous bone is relevant to the study of clinical bone assessment. Historical experiments revealed the importance of both the viscous effects of bone marrow and the anisotropy of the porous microstructure. Of those propagation models previously applied to cancellous bone, Biot's theory incorporates viscosity, but has only been applied in isotropic form, while Schoenberg's anisotropic model does not include viscosity. In this paper we present an approach that incorporates the merits of both models, by utilizing the tortuosity, a key parameter describing pore architecture. An angle-dependent tortuosity for a layered structure is used in Biot's theory to generate the "Stratified Biot Model" for cancellous bone, which is compared with published bone data. While the Stratified Biot model was inferior to Schoenberg's model for slow wave velocity prediction, the proposed model improved agreement fast wave velocity at high propagation angles, particularly when sorted for porosity. An attempt was made to improve the fast wave agreement at low angles by introducing an angle-dependent Young's Modulus, which, while improving the agreement of predicted fast wave velocity at low angles, degraded agreement at high angles. In this paper the utility of the tortuosity in characterizing the architecture of cancellous bone is highlighted.
松质骨中超声传播的建模与临床骨评估研究相关。以往的实验揭示了骨髓粘性效应和多孔微结构各向异性的重要性。在先前应用于松质骨的传播模型中,比奥理论考虑了粘性,但仅以各向同性形式应用,而舍恩伯格的各向异性模型则未考虑粘性。在本文中,我们提出了一种结合这两种模型优点的方法,通过利用曲折度这一描述孔隙结构的关键参数。在比奥理论中使用层状结构的角度相关曲折度来生成松质骨的“分层比奥模型”,并将其与已发表的骨数据进行比较。虽然分层比奥模型在慢波速度预测方面不如舍恩伯格模型,但该模型在高传播角度下改善了快波速度的一致性,特别是按孔隙率分类时。通过引入角度相关的杨氏模量试图改善低角度下的快波一致性,这虽然改善了低角度下预测快波速度的一致性,但在高角度下一致性却降低了。本文强调了曲折度在表征松质骨结构方面的作用。