Poroelastography: estimating and imaging the poroelastic properties of tissues

E. Konofagou, T. Harrigan, J. Ophir, T. Krouskop
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引用次数: 9

Abstract

In the field of elastography, biological tissues are typically assumed to be purely linear elastic solids. However, several tissues including brain, cartilage and edematous soft tissues, have long been known to be poroelastic. The authors recently developed a method to estimate the local Poisson's ratio in linear elastic solids (see Ultrasound in Medicine and Biology, vol. 24, no. 8, p. 1183-99, 1998). In the current study the authors use the same method to measure the time-dependent effective Poisson's ratio in poroelastic materials. The resulting time-sequenced poroelastograms show the spatial distribution of the fluid within the solid at each time instant and give insight into the Poisson's ratio of the solid and its permeability to the fluid. Results were obtained from both finite-element simulations and experimental poroelastic phantoms.
孔隙弹性成像:组织孔隙弹性特性的估计和成像
在弹性学领域,生物组织通常被假定为纯线性弹性固体。然而,一些组织,包括大脑、软骨和水肿软组织,早就被认为是多孔弹性的。作者最近开发了一种估算线弹性固体中局部泊松比的方法(见《医学与生物学中的超声》,第24卷,第2期)。8,第1183-99页,1998年)。在目前的研究中,作者使用相同的方法来测量孔隙弹性材料中随时间变化的有效泊松比。由此产生的时间序列孔隙弹性图显示了流体在每个时间瞬间在固体中的空间分布,并提供了固体的泊松比及其对流体的渗透率。结果由有限元模拟和实验孔弹性模型得到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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