二维散斑跟踪超声心动图分割增强弹性图像配准性能研究。

IF 2.5 4区 医学 Q1 ACOUSTICS Ultrasonic Imaging Pub Date : 2022-01-01 Epub Date: 2022-01-16 DOI:10.1177/01617346211068812
Aleksandra Wilczewska, Szymon Cygan, Jakub Żmigrodzki
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引用次数: 0

摘要

虽然二维散斑跟踪超声心动图在心脏病医学诊断技术中占有重要地位,但其可重复性和可靠性仍有待进一步发展。很少有研究尝试将左心室分割结果整合到位移和应变估计过程中,以改善其性能。我们提出了在基于弹性图像配准的位移估计中使用掩模信息作为附加惩罚。该方法使用短轴视图合成超声心动图数据进行研究,使用主动轮廓法进行分割。对得到的掩模进行不同程度的变形,采用不同的方法评估分割质量对位移和应变估计过程的影响。位移和周向应变估计结果表明,尽管该方法依赖于掩模质量,但在分割效果良好的情况下,由于分割质量差而导致的潜在精度损失远低于潜在精度增益。
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Segmentation Enhanced Elastic Image Registration for 2D Speckle Tracking Echocardiography-Performance Study In Silico.

Although the two dimensional Speckle Tracking Echocardiography has gained a strong position among medical diagnostic techniques in cardiology, it still requires further developments to improve its repeatability and reliability. Few works have attempted to incorporate the left ventricle segmentation results in the process of displacements and strain estimation to improve its performance. We proposed the use of mask information as an additional penalty in the elastic image registration based displacements estimation. This approach was studied using a short axis view synthetic echocardiographic data, segmented using an active contour method. The obtained masks were distorted to a different degree, using different methods to assess the influence of the segmentation quality on the displacements and strain estimation process. The results of displacements and circumferential strain estimations show, that even though the method is dependent on the mask quality, the potential loss in accuracy due to the poor segmentation quality is much lower than the potential accuracy gain in cases where the segmentation performs well.

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来源期刊
Ultrasonic Imaging
Ultrasonic Imaging 医学-工程:生物医学
CiteScore
5.10
自引率
8.70%
发文量
15
审稿时长
>12 weeks
期刊介绍: Ultrasonic Imaging provides rapid publication for original and exceptional papers concerned with the development and application of ultrasonic-imaging technology. Ultrasonic Imaging publishes articles in the following areas: theoretical and experimental aspects of advanced methods and instrumentation for imaging
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