Park J, Metaxas D, Axel L
Department of Computer and Information Science, University of Pennsylvania, Philadelphia 19104-6389, USA.
Med Image Anal. 1996 Mar;1(1):53-71. doi: 10.1016/s1361-8415(01)80005-0.
We present a new approach for the analysis of the left ventricular shape and motion based on the development of a new class of volumetric deformable models. We estimate the deformation and complex motion of the left ventricle (LV) in terms of a few parameters that are functions and whose values vary locally across the LV. These parameters capture the radial and longitudinal contraction, the axial twisting, and the long-axis deformation. Using Lagrangian dynamics and finite-element theory, we convert these volumetric primitives into dynamic models that deform due to forces exerted by the datapoints. We present experiments where we used magnetic tagging (MRI-SPAMM) to acquire datapoints from the LV during systole. By applying our method to MRI-SPAMM datapoints, we were able to characterize the 3-D shape and motion of the LV both locally and globally, in a clinically useful way. In addition, based on the model parameters we were able to extract quantitative differences between normal and abnormal hearts and visualize them in a way that is useful to physicians.
我们提出了一种基于新型体积可变形模型开发的左心室形状和运动分析新方法。我们根据几个参数来估计左心室(LV)的变形和复杂运动,这些参数是函数,其值在左心室局部范围内变化。这些参数捕捉径向和纵向收缩、轴向扭转以及长轴变形。利用拉格朗日动力学和有限元理论,我们将这些体积基元转换为由于数据点施加的力而变形的动态模型。我们展示了实验,在实验中我们使用磁共振标记(MRI-SPAMM)在收缩期从左心室获取数据点。通过将我们的方法应用于MRI-SPAMM数据点,我们能够以临床有用的方式在局部和全局上表征左心室的三维形状和运动。此外,基于模型参数,我们能够提取正常心脏和异常心脏之间的定量差异,并以对医生有用的方式将其可视化。