Samani Abbas, Plewes Donald
Department of Medical Biophysics/Electrical and Computer Engineering, University of Western Ontario, London, ON N6A 5C1, Canada.
Phys Med Biol. 2004 Sep 21;49(18):4395-405. doi: 10.1088/0031-9155/49/18/014.
Over the past decade, there has been increasing interest in modelling soft tissue deformation. This topic has several biomedical applications ranging from medical imaging to robotic assisted telesurgery. In these applications, tissue deformation can be very large due to low tissue stiffness and lack of physical constraints. As a result, deformation modelling of such organs often requires a treatment, which reflects nonlinear behaviour. While computational techniques such as nonlinear finite element methods are well developed, the required intrinsic nonlinear mechanical parameters of soft tissues that are critical to develop reliable tissue deformation models are not well known. To address this issue, we developed a system to measure the hyperelastic parameters of small ex vivo tissue samples. This measurement technique consists of indenting an unconfined small block of tissue using a computer controlled loading system while measuring the resulting indentation force. The nonlinear tissue force-displacement response is used to calculate the hyperelastic parameters via an appropriate inversion technique. This technique is based on a nonlinear least squares formulation that uses a nonlinear finite element model as the direct problem solver. The features of the system are demonstrated with two samples of breast tissue and typical hyperelastic results are presented.
在过去十年中,对软组织变形建模的兴趣与日俱增。该主题在从医学成像到机器人辅助远程手术等多个生物医学领域都有应用。在这些应用中,由于组织刚度低且缺乏物理约束,组织变形可能非常大。因此,此类器官的变形建模通常需要一种能反映非线性行为的处理方法。虽然诸如非线性有限元方法等计算技术已得到充分发展,但对于开发可靠的组织变形模型至关重要的软组织固有非线性力学参数却并不为人所知。为解决这一问题,我们开发了一种系统来测量离体小组织样本的超弹性参数。这种测量技术包括使用计算机控制的加载系统对无约束的小组织块进行压痕操作,同时测量产生的压痕力。通过适当的反演技术,利用非线性组织力 - 位移响应来计算超弹性参数。该技术基于非线性最小二乘公式,使用非线性有限元模型作为正问题求解器。通过两个乳腺组织样本展示了该系统的特性,并给出了典型的超弹性结果。