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Influence of ultrasound speckle tracking strategies for motion and strain estimation

机译:超声散斑跟踪策略对运动和应变估计的影响

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Speckle Tracking is one of the most prominent techniques used to estimate the regional movement of the heart based on ultrasound acquisitions. Many different approaches have been proposed, proving their suitability to obtain quantitative and qualitative information regarding myocardial deformation, motion and function assessment. New proposals to improve the basic algorithm usually focus on one of these three steps: (1) the similarity measure between images and the speckle model; (2) the transformation model, i.e. the type of motion considered between images; (3) the optimization strategies, such as the use of different optimization techniques in the transformation step or the inclusion of structural information. While many contributions have shown their good performance independently, it is not always clear how they perform when integrated in a whole pipeline. Every step will have a degree of influence over the following and hence over the final result. Thus, a Speckle Tracking pipeline must be analyzed as a whole when developing novel methods, since improvements in a particular step might be undermined by the choices taken in further steps. This work presents two main contributions: (1) We provide a complete analysis of the influence of the different steps in a Speckle Tracking pipeline over the motion and strain estimation accuracy. (2) The study proposes a methodology for the analysis of Speckle Tracking systems specifically designed to provide an easy and systematic way to include other strategies. We close the analysis with some conclusions and recommendations that can be used as an orientation of the degree of influence of the models for speckle, the transformation models, interpolation schemes and optimization strategies over the estimation of motion features. They can be further use to evaluate and design new strategy into a Speckle Tracking system. (C) 2016 Elsevier B.V. All rights reserved.
机译:斑点跟踪是基于超声采集来估计心脏区域运动的最杰出技术之一。已经提出了许多不同的方法,证明它们适用于获得有关心肌变形,运动和功能评估的定量和定性信息。改进基本算法的新提议通常集中在以下三个步骤之一:(1)图像和斑点模型之间的相似性度量; (2)转换模型,即图像之间考虑的运动类型; (3)优化策略,例如在转换步骤中使用不同的优化技术或包含结构信息。尽管许多贡献独立地显示了它们的良好性能,但是当集成到整个管道中时,它们的性能并不总是很清楚。每个步骤都会对后续步骤以及最终结果产生一定程度的影响。因此,在开发新方法时,必须对斑点跟踪管道进行整体分析,因为在特定步骤中的改进可能会因后续步骤中的选择而受到损害。这项工作提出了两个主要贡献:(1)我们提供了对斑点跟踪管道中不同步骤对运动和应变估计精度的影响的完整分析。 (2)研究提出了一种用于斑点追踪系统分析的方法,该方法专门设计用于提供一种简便而系统的方式来包含其他策略。我们以一些结论和建议来结束分析,这些结论和建议可以用作散斑模型,变换模型,插值方案和优化策略对运动特征估计的影响程度的方向。它们可以进一步用于评估新策略并将其设计到散斑跟踪系统中。 (C)2016 Elsevier B.V.保留所有权利。

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