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A fully automatic 2D ultrasound probe calibration method using a simple phantom

机译:使用简单幻像的全自动2D超声探头校准方法

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Probe calibration should be performed for free-hand tracking and ultrasound (US) fusion with a position sensor-attached US probe in US guided interventions. Difficulties in locating the probe imaging plane and adjusting the alignment of the probe with the calibration phantom call for more complicated and precise phantoms. However, the manufacture of such phantoms is time-consuming and expensive. Furthermore, the segmentation of the phantom features in US images cannot be reliably automated, which requires manual intervention. This paper presents a fully automatic 2D probe calibration method using a rather simple phantom. By detecting and analyzing the temporal signal arising from the ultrasound artifacts when sweeping the 2D probe over the phantom, the imaging plane of the probe and the image features can be reliably identified. Then the features are fed to a nonlinear optimizer to estimate the calibration parameters. The whole procedure including the setup can be done within 2 minutes with the fiducial registration error (FRE) of 0.16 mm. A US-guided biopsy experiment has also been conducted which shows the target registration error (TRE) of less than 1 mm.
机译:探针校准应针对自由追踪和超声(US)融合来进行,其中置位传感器 - 连接美国引导干预措施。在定位探头成像平面并用校准模拟调整探头对准的困难,以获得更复杂和精确的幽灵。然而,这种模糊的制造是耗时和昂贵的。此外,美国图像中的幻象特征的分割不能可靠自动化,这需要手动干预。本文介绍了一种使用相当简单的幻像的全自动2D探针校准方法。通过在扫描在模体上扫描2D探针时,通过检测和分析来自超声伪像而产生的时间信号,可以可靠地识别探头的成像平面和图像特征。然后将功能馈送到非线性优化器以估计校准参数。包括设置的整个过程可以在2分钟内完成,基准注册误差(FRE)为0.16毫米。还进行了一种美国引导的活检实验,其显示目标登记误差(TRE)小于1mm。

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