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A Gone Based Electromagnetic 3D Ultrasound Calibration

机译:基于去向的电磁3D超声校准

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摘要

For a surgical navigation system with swept-volume 3D ultrasound images, it is necessary to estimate the extracted positions of ultrasound voxels relative to a tracking reference by a 3D ultrasound calibration. In this paper, we propose a cone based 3D ultrasound calibration system by using an electromagnetic tracking device. The proposed phantom is not expensive, easy to construct, easy to scan, and has a simple experiment setup, while the identification of the tips on each cone from a single ultrasound volume is a manual process, the tracking position of each tip is measured by a pen probe, and the calibration matrix is estimated by SVD (Singular Value Decomposition) method. The precision of the system is experimentally evaluated. It turns out that the maximum distance root mean square (RMS) error is 3.32 mm by using 12 cones, which satisfies me requirement of our fetal surgical navigation system: less man 3.85 mm.
机译:对于具有扫描体积的3D超声图像的手术导航系统,有必要通过3D超声校准来估计超声体素相对于跟踪参考的提取位置。在本文中,我们提出了一种使用电磁跟踪设备的基于圆锥的3D超声校准系统。所提出的体模并不昂贵,易于构造,易于扫描并且具有简单的实验设置,而从单个超声体积中识别每个锥体上的尖端是手动过程,每个尖端的跟踪位置通过笔探针,并通过SVD(奇异值分解)方法估算校准矩阵。该系统的精度是通过实验评估的。事实证明,使用12个圆锥体,最大距离均方根(RMS)误差为3.32毫米,这满足了我的胎儿手术导航系统的要求:人少了3.85毫米。

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