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首页> 外文期刊>Ultrasound in Medicine and Biology >Calibration for Position Tracking of Swept Motor 3-D Ultrasound
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Calibration for Position Tracking of Swept Motor 3-D Ultrasound

机译:扫频电机3-D超声位置跟踪的校准

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摘要

Tracking the position and orientation of a 3-D ultrasound transducer has many clinical applications. Tracking requires calibration to find the transformation between the tracking sensor and the ultrasound coordinates. Typically the set of image slice data are scan converted to a Cartesian volume using assumed motor geometry and a single transformation to the sensor. We propose, instead, the calibration of individual slices using a 2-D calibration technique. A best fit to a subset of slices is performed to decrease data collection time compared with that for calibration of all slices, and to reduce the influence of random errors in individual calibrations. We compare our technique with four scan conversion-based techniques: 2-D N-wire on the center slice, N-wire using a 3-D volume, N-wire using a 3-D volume including the edge points and a new closed-form planar method using a 3-D volume. The proposed multi-slice technique produced the smallest point reconstruction error (0.82mm using a tracked stylus).
机译:跟踪3-D超声换能器的位置和方向具有许多临床应用。跟踪需要校准以找到跟踪传感器和超声坐标之间的转换。通常,使用假定的电动机几何形状和对传感器的单次转换,将图像切片数据集扫描转换为笛卡尔体积。相反,我们建议使用2-D校准技术对单个切片进行校准。与所有切片的校准相比,对切片子集的最佳拟合可减少数据收集时间,并减少单个校准中随机误差的影响。我们将我们的技术与四种基于扫描转换的技术进行了比较:中心切片上的2-D N线,使用3-D体积的N线,使用包括边缘点和新闭合点的3-D体积的N线3-D体积的平面成形方法。所提出的多层技术产生了最小的点重构误差(使用跟踪笔时为0.82mm)。

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