首页> 外文会议>Ultrasonic Imaging and Signal Processing; Progress in Biomedical Optics and Imaging; vol.7 no.33 >Multi-view 3D Reconstruction with Volumetric Registration in a Freehand Ultrasound Imaging System
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Multi-view 3D Reconstruction with Volumetric Registration in a Freehand Ultrasound Imaging System

机译:徒手超声成像系统中具有体积配准的多视图3D重建

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In this paper, we describe a new freehand ultrasound imaging system for reconstructing the left ventricle from 2D echocardiography slices. An important contribution of the proposed system is its ability to reconstruct from multiple standard views. The multi-view reconstruction procedure results in significant reduction in reconstruction error over single view reconstructions. The system uses object-based 3D volumetric registration, allowing for arbitrary rigid object movements in inter-view acquisition. Furthermore, a new segmentation procedure that combines level set methods with gradient vector flow(GVF) is used for automatically segmenting the 2D ultrasound images, in which low level of contrast, high level of speckle noise, and weak boundaries are common. The new segmentation approach is shown to be robust to these artifacts and is found to converge to the boundary from a wider range of initial conditions than competitive methods. The proposed system has been validated on a physical, 3D ultrasound calibration phantom and evaluated on one actual cardiac echocardiography data set. In the phantom experiment, two calibrated volumetric egg-shape objects were scanned from the top and side windows and reconstructed using the new method. The volume error was measured to be less than 4%. In a real heart data set experiment, qualitative results of 3D surface reconstruction from parasternal and apical views appear significantly improved over single view reconstructions. The estimated volumes from the 3D reconstructions were also found to be in agreement with the manual clinical measurements from 2D slices. Further extension of this work is to compare the quantitative results with more accuracy MRI data.
机译:在本文中,我们描述了一种新的徒手超声成像系统,用于从二维超声心动图切片重建左心室。提出的系统的重要贡献是其能够从多个标准视图进行重构的能力。与单视图重建相比,多视图重建过程可显着减少重建误差。该系统使用基于对象的3D体积配准,允许在视图间获取中进行任意的刚性对象移动。此外,将水平集方法与梯度矢量流(GVF)相结合的新分割程序用于自动分割2D超声图像,其中低对比度,高斑点噪声和弱边界是常见的。新的分割方法显示出对这些伪像的鲁棒性,并且发现与竞争性方法相比,从更广泛的初始条件收敛到边界。拟议的系统已通过物理3D超声校准体模进行了验证,并在一个实际的心脏超声心动图数据集上进行了评估。在幻像实验中,从顶部和侧面窗户扫描了两个校准的容积蛋形物体,并使用新方法对其进行了重建。测得的体积误差小于4%。在真实的心脏数据集实验中,从胸骨旁和根尖视图进行3D表面重建的定性结果看来比单视图重建显着改善。还发现3D重建的估计体积与2D切片的手动临床测量结果一致。这项工作的进一步扩展是将定量结果与更准确的MRI数据进行比较。

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