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用于增强视野成像的多个三维超声心动图记录的时空配准。

Spatiotemporal registration of multiple three-dimensional echocardiographic recordings for enhanced field of view imaging.

作者信息

Danudibroto Adriyana, Bersvendsen Jørn, Gérard Olivier, Mirea Oana, D'hooge Jan, Samset Eigil

机构信息

GE Vingmed Ultrasound, Gaustadalléen 21, Oslo 0349, Norway; KU Leuven, Department of Cardiovasular Sciences, Cardiovascular Imaging and Dynamics Lab, UZ Herestraat 49, Box 7003, Leuven 3000, Belgium.

GE Vingmed Ultrasound, Gaustadalléen 21, Oslo 0349, Norway; University of Oslo, Department of Informatics, Gaustadalléen 23 B, Oslo 0373, Norway.

出版信息

J Med Imaging (Bellingham). 2016 Jul;3(3):037001. doi: 10.1117/1.JMI.3.3.037001. Epub 2016 Jul 8.

Abstract

The use of three-dimensional (3-D) echocardiography is limited by signal dropouts and narrow field of view. Data compounding is proposed as a solution to overcome these limitations by combining multiple 3-D recordings to form a wide field of view. The first step of the solution requires registration between the recordings both in the spatial and temporal dimension for dynamic organs such as the heart. Accurate registration between the individual echo recordings is crucial for the quality of compounded volumes. A temporal registration method based on a piecewise one-dimensional cubic B-spline in combination with multiscale iterative Farnebäck optic flow method for spatial registration was described. The temporal registration method was validated on in vivo data sets with annotated timing of mitral valve opening. The spatial registration method was validated using in vivo data and compared to registration with Procrustes analysis using manual contouring as a benchmark. The spatial accuracy was assessed in terms of mean of absolute distance and Hausdorff distance between the left ventricular contours. The results showed that the temporal registration accuracy is in the range of half the time resolution of the echo recordings and the achieved spatial accuracy of the proposed method is comparable to manual registration.

摘要

三维(3-D)超声心动图的应用受到信号缺失和视野狭窄的限制。数据合成被提议作为一种解决方案,通过组合多个3-D记录以形成宽视野来克服这些限制。该解决方案的第一步要求在空间和时间维度上对记录进行配准,对于像心脏这样的动态器官而言。各个回波记录之间的精确配准对于合成容积的质量至关重要。描述了一种基于分段一维三次B样条的时间配准方法,并结合多尺度迭代法尔尼贝克光流法进行空间配准。该时间配准方法在具有二尖瓣开放注释时间的体内数据集上得到了验证。空间配准方法使用体内数据进行了验证,并与使用手动轮廓作为基准的普罗克汝斯分析配准进行了比较。空间准确性根据左心室轮廓之间的绝对距离均值和豪斯多夫距离进行评估。结果表明,时间配准精度在回波记录时间分辨率的一半范围内,并且所提出方法实现的空间准确性与手动配准相当。

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本文引用的文献

1
Multiframe registration of real-time three-dimensional echocardiography time series.实时三维超声心动图时间序列的多帧配准
J Med Imaging (Bellingham). 2014 Apr;1(1):014004. doi: 10.1117/1.JMI.1.1.014004. Epub 2014 Apr 23.
2
Real-time image-based rigid registration of three-dimensional ultrasound.实时基于图像的三维超声刚性配准。
Med Image Anal. 2012 Feb;16(2):402-14. doi: 10.1016/j.media.2011.10.004. Epub 2011 Nov 15.
3
Real-time 4D ultrasound mosaicing and visualization.实时四维超声拼接与可视化
Med Image Comput Comput Assist Interv. 2011;14(Pt 1):105-12. doi: 10.1007/978-3-642-23623-5_14.
7
Volumetric ultrasound panorama based on 3D SIFT.基于三维尺度不变特征变换的容积超声全景图
Med Image Comput Comput Assist Interv. 2008;11(Pt 2):52-60. doi: 10.1007/978-3-540-85990-1_7.
9
Three-dimensional ultrasound mosaicing.三维超声拼接
Med Image Comput Comput Assist Interv. 2007;10(Pt 2):327-35. doi: 10.1007/978-3-540-75759-7_40.

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