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Predictive Modeling of Cardiac Fiber Orientation Using the Knutsson Mapping

机译:使用Knutsson映射对心脏纤维取向进行预测建模

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The construction of realistic subject-specific models of the myocardial fiber architecture is relevant to the understanding and simulation of the electromechanical behavior of the heart. This paper presents a statistical approach for the prediction of fiber orientation from myocardial morphology based on the Knutsson mapping. In this space, the orientation of each fiber is represented in a continuous and distance preserving manner, thus allowing for consistent statistical analysis of the data. Furthermore, the directions in the shape space which correlate most with the myocardial fiber orientations are extracted and used for subsequent prediction. With this approach and unlike existing models, all shape information is taken into account in the analysis and the obtained latent variables are statistically optimal to predict fiber orientation in new datasets. The proposed technique is validated based on a sample of canine Diffusion Tensor Imaging (DTI) datasets and the results demonstrate marked improvement in cardiac fiber orientation modeling and prediction.
机译:心肌纤维结构的特定主题的现实模型的构建与心脏的机电行为的理解和模拟有关。本文提出了一种基于Knutsson映射的从心肌形态学预测纤维取向的统计方法。在此空间中,以连续且保持距离的方式表示每根光纤的方向,因此可以对数据进行一致的统计分析。此外,提取形状空间中与心肌纤维取向最相关的方向,并将其用于随后的预测。通过这种方法,与现有模型不同,在分析中考虑了所有形状信息,并且获得的潜在变量在统计上是最佳的,以预测新数据集中的纤维方向。基于犬扩散张量成像(DTI)数据集的样本对提出的技术进行了验证,结果证明了在心脏纤维方向建模和预测方面的显着改善。

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