Evaluation of a Nonrigid Motion Compensation Technique Based on Spatiotemporal Features for Small Lesion Detection in Breast MRI

Frank Steinbrücker, A. Meyer-Bäse, T. Schlossbauer, D. Cremers
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引用次数: 1

Abstract

Motion-induced artifacts represent a major problem in detection and diagnosis of breast cancer in dynamic contrast-enhanced magnetic resonance imaging. The goal of this paper is to evaluate the performance of a new nonrigid motion correction algorithm based on the optical flow method. For each of the small lesions, we extracted morphological and dynamical features describing both global and local shape, and kinetics behavior. In this paper, we compare the performance of each extracted feature set under consideration of several 2D or 3D motion compensation parameters for the differential diagnosis of enhancing lesions in breast MRI. Based on several simulation results, we determined the optimal motion compensation parameters. Our results have shown that motion compensation can improve the classification results. The results suggest that the computerized analysis system based on the non-rigid motion compensation technique and spatiotemporal features has the potential to increase the diagnostic accuracy of MRI mammography for small lesions and can be used as a basis for computer-aided diagnosis of breast cancer with MR mammography.
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基于时空特征的非刚性运动补偿技术在乳腺MRI小病灶检测中的应用
运动诱发伪影是动态增强磁共振成像检测和诊断乳腺癌的主要问题。本文的目的是评估一种基于光流法的非刚体运动校正算法的性能。对于每个小病变,我们提取了描述全局和局部形状以及动力学行为的形态学和动力学特征。在本文中,我们比较了在考虑几个二维或三维运动补偿参数的情况下,每个提取的特征集的性能,用于乳腺MRI中增强病变的鉴别诊断。根据多个仿真结果,确定了最优运动补偿参数。实验结果表明,运动补偿可以改善分类结果。结果表明,基于非刚性运动补偿技术和时空特征的计算机化分析系统有可能提高MRI乳房x线摄影对小病变的诊断准确性,可作为MRI乳房x线摄影对乳腺癌计算机辅助诊断的基础。
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