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Immediate Ultrasound Calibration with Three Poses and Minimal Image Processing

机译:具有三个姿势的即时超声校准和最少的图像处理

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摘要

This paper introduces a novel method for ultrasound (US) probe calibration based on closed-form formulation and using minimal US imaging allowing for an immediate result. Prior to calibration, a position sensor is used to track each image in 3D space while the US image is used to determine target location within the image. The calibration procedure uses these two pieces of information to determine the transformation (translation, rotation, and scaling) of the scan plane with respect to the position sensor. We utilize a closed form solution from two motions of the US probe relying on optical digitization with a calibrated pointer to replace with a great extent the traditional segmentation of points/planes in US images. The tracked pointer appeared to introduce significantly less error than the resolution of the US image caused in earlier approaches. Our method also uses significantly fewer US images and requires only minimal image segmentation, or none with a special probe attachment.
机译:本文介绍了一种基于封闭式配方并使用最少的US成像技术进行超声(US)探头校准的新方法,可立即获得结果。在校准之前,位置传感器用于跟踪3D空间中的每个图像,而US图像用于确定图像内的目标位置。校准过程使用这两条信息来确定扫描平面相对于位置传感器的转换(平移,旋转和缩放)。我们利用来自美国探头的两个运动的闭合形式解决方案,该解决方案依靠光学数字化和校准指针来在很大程度上替代美国图像中点/平面的传统分割。跟踪的指针所引入的错误似乎比早期方法引起的美国图像的分辨率要少得多。我们的方法还使用了少得多的US图像,只需要最小的图像分割,或者不需要特殊的探头附件。

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