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Evaluation of 3D modality-independent elastography for breast imaging: a simulation study

机译:乳房成像的3D方式无关弹性成像评估:模拟研究

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This paper reports on the development and preliminary testing of a three-dimensional implementation of an inverse problem technique for extracting soft-tissue elasticity information via non-rigid model-based image registration. The modality-independent elastography (MIE) algorithm adjusts the elastic properties of a biomechanical model to achieve maximal similarity between images acquired under different states of static loading. A series of simulation experiments with clinical image sets of human breasts were performed to test the ability of the method to identify and characterize a radiographically occult stiff lesion. Because boundary conditions are a critical input to the algorithm, a comparison of three methods for semi-automated surface point correspondence was conducted in the context of systematic and randomized noise processes. The results illustrate that 3D MIE was able to successfully reconstruct elasticity images using data obtained from both magnetic resonance and x-ray computed tomography systems. The lesion was localized correctly in all cases and its relative elasticity found to be reasonably close to the true values (3.5% with the use of spatial priors and 11.6% without). In addition, the inaccuracies of surface registration performed with thin-plate spline interpolation did not exceed empiric thresholds of unacceptable boundary condition error.
机译:本文报告了反问题技术的三维实现的开发和初步测试,该技术可通过基于非刚性模型的图像配准提取软组织弹性信息。与模式无关的弹性成像(MIE)算法调整生物力学模型的弹性特性,以在不同静态载荷状态下获取的图像之间实现最大相似度。进行了一系列带有人类乳房临床图像的模拟实验,以测试该方法识别和表征放射学上隐匿的硬性病变的能力。由于边界条件是算法的关键输入,因此在系统噪声过程和随机噪声过程的背景下,对三种半自动表面点对应方法进行了比较。结果表明3D MIE能够使用从磁共振和X射线计算机断层摄影系统获得的数据成功地重建弹性图像。在所有情况下,病变均已正确定位,发现其相对弹性相当接近真实值(使用空间先验时为3.5%,不使用空间时为11.6%)。此外,用薄板样条插值进行的表面配准的误差不超过不可接受的边界条件误差的经验阈值。

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