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Freehand Ultrasound Calibration Using the Unscented Kalman Filter

机译:使用Unspented Kalman滤波器的手法超声校准

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Three-dimensional freehand ultrasound has found several clinical applications, such as image-guided surgery and radiotherapy, since the last decade. A key step of all the freehand ultrasound imaging systems is calibration. Calibration is the procedure to estimate a two to three-dimensional transformation matrix which precisely maps two-dimensional ultrasound images to the physical coordinate. This paper presents a novel freehand ultrasound calibration algorithm which is based on a sequential least squares method, known as the Unscented Kalman Filter (UKF) algorithm. This method has significant advantages over the prior approaches, where the block least squares techniques have been employed to perform the ultrasound probe calibration. One of the advantages is that it computes the calibration parameters as well as their variances sequentially by processing the sample points, collected from ultrasound images of a designed phantom, one by one. Variance evaluation can be used to generate a confidence measure for the estimated calibration matrix. It also enables us to stop the calibration procedure once the desired confidence measure is met or informs us to collect more sample points to improve the calibration accuracy. The proposed calibration method is evaluated by using a custom designed N-wire phantom. The simulation results confirm that the proposed calibration algorithm converges to the same solution as the block least squares algorithms, while having the above mentioned practical advantages.
机译:三维徒手超声发现了几种临床应用,例如图像引导的手术和放射治疗,自上年十年以来。所有手法超声成像系统的一个关键步骤是校准。校准是估计两个到三维变换矩阵的过程,该方法将二维超声图像精确地映射到物理坐标。本文介绍了一种新的手法超声校准算法,该校准算法基于序贯最小二乘法,称为Unscented Kalman滤波器(UKF)算法。该方法具有优于现有方法的显着优点,其中采用块最小二乘技术来执行超声探头校准。其中一个优点在于它通过处理由所设计的模型的超声图像收集的采样点来计算校准参数以及它们的差异,一个接一个地。方差评估可用于为估计的校准矩阵产生置信度。它还使我们能够在满足所需的置信度量或通知我们收集更多样本点以提高校准精度的情况下停止校准程序。通过使用自定义设计的N线幻影来评估所提出的校准方法。仿真结果证实,所提出的校准算法将与块最小二乘算法相同的解决方案,同时具有上述实际优点。

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