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A Novel Phantom-Less Spatial and Temporal Ultrasound Calibration Method

机译:一种新型幽幽的空间和时间超声校准方法

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This paper introduces a novel method for ultrasound calibration for both spatial and temporal parameters. The main advantage of this method is that it does not require a phantom, which is usually expensive to fabricate. Furthermore, the method does not require extensive image processing. For spatial calibration, we solve an optimization problem established by a set of equations that relate the orientations of a line (i.e., calibration pointer) to the intersection points appearing in the ultrasound image. The line orientation is provided through calibration of both ends of the calibration pointer. Temporal calibration is achieved by processing of the captured pointer orientations and the corresponding image positions of intersection along with the timing information. The effectiveness of the unified method for both spatial and temporal calibration is apparent from the quality of the 3D reconstructions of a known object.
机译:本文介绍了一种用于空间和时间参数的超声校准的新方法。 这种方法的主要优点是它不需要幻象,这通常是昂贵的制造。 此外,该方法不需要广泛的图像处理。 对于空间校准,我们解决了一组方程建立的优化问题,该方程式将线(即,校准指针)的方向相关到出现在超声图像中的交叉点。 通过校准校准指针的两端来提供线路方向。 通过处理捕获的指针取向和交叉点的相应图像位置以及定时信息来实现时间校准。 从已知对象的3D重建的质量,统一方法对空间和时间校准的统一方法的有效性是显而易见的。

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