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Spatial Calibration for 3D Freehand Ultrasound via Independent General Motions

机译:通过独立的通用运动进行3D手绘超声波的空间校准

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The concept of 3D freehand ultrasound has been of great interest to researchers for decades due to many advantages over conventional 2D ultrasound, such as image quality that is less dependent on a sonographer's skills and more intuitive and interactive 3D views of scanned objects. However, obstacles such as the need for spatial calibration remain, which hinder the effective application of this technique in clinical settings. Here we report the feasibility and accuracy of performing spatial calibration based upon a closed-form solution to matrix equations formed by two independent general motions. We achieved millimeter-level accuracy for translational and degree-level accuracy for rotational degrees of freedom. The calibration accuracy may be further improved by optimizing the matrix solution.
机译:3D徒手超声的概念数十年来一直受到研究人员的青睐,这是因为与常规2D超声相比,它具有许多优势,例如图像质量较少依赖于超声医师的技能,而扫描对象的直观和交互式3D视图却较少。但是,仍然存在诸如需要进行空间校准的障碍,这阻碍了该技术在临床环境中的有效应用。在这里,我们报告了基于由两个独立的一般运动形成的矩阵方程的闭式解进行空间校准的可行性和准确性。对于平移自由度,我们达到了毫米级精度,对于旋转自由度,我们达到了度级精度。通过优化基质溶液可以进一步提高校准精度。

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