首页> 外文期刊>Journal of Medical Physics/Association of Medical Physicists of India >A Novel Design of N-Fiducial Phantom for Automatic Ultrasound Calibration
【24h】

A Novel Design of N-Fiducial Phantom for Automatic Ultrasound Calibration

机译:一种新颖的自动超声校准N基准模型设计

获取原文
           

摘要

Background: Freehand ultrasound (US) is a technique used to acquire three-dimensional (3D) US images using a tracked 2D US probe. Calibrating the probe with a proper calibration phantom improves the precision of the technique and allows several applications in computer-assisted surgery. N-fiducial phantom is widely used due to the robustness of precise fabrication and convenience of use. In principle, the design supports single-frame calibration by providing at least three noncollinear points in 3D space at once. Due to this requirement, most designs contain multiple N-fiducials in unpatterned and noncollinear arrangements. The unpatterned multiple N-fiducials appearing as scattered dots in the US image are difficult to extract, and the extracted data are usually contaminated with noise. In practice, the extraction mostly relied on manual interventions, and calibration with N-fiducial phantom has not yet achieved high accuracy with single or few frame calibrations due to noise contamination. Aims: In this article, we propose a novel design of the N-fiducial US calibration phantom to enable automatic feature extraction with comparable accuracy to multiple frame calibration. Materials and Methods: Along with the design, the Random Sample Consensus (RANSAC) algorithm was used for feature extraction with both 2D and 3D models estimation. The RANSAC feature extraction algorithm was equipped with a closed-form calibration method to achieve automatic calibration. Results: The accuracy, precision, and shape reconstruction errors of the calibration acquired from the experiment were significantly matched with the previous literature reports. Conclusions: The results showed that our proposed method has a high efficiency to perform automatic feature extraction compared to conventional extraction performed by humans.
机译:背景:手绘超声(美国)是一种用于使用跟踪的2D US探针获取三维(3D)美国图像的技术。通过适当的校准幻影校准探头可提高技术的精度,并允许计算机辅助手术中的几种应用。由于精确的制造和方便使用,N-PINTUILIAL PHANTOM被广泛使用。原则上,该设计通过立即提供3D空间中的至少三个非可折叠点来支持单帧校准。由于此要求,大多数设计在未绘图和非可折叠布置中包含多个N基准。出现在美国图像中的散射点出现的未绘图的多个n基因难以提取,并且提取的数据通常被噪声污染。在实践中,提取主要依赖于手动干预,并且由于噪音污染而与N形基准模型的校准尚未实现高精度,并且由于噪音污染而具有单帧或少数帧校准。目的:在本文中,我们提出了一种新颖的设计N-PERTUIIAL US校准模拟设计,以使自动特征提取能够以可比的精度与多帧校准进行可比的精度。材料和方法:随着设计,随机样本共识(RANSAC)算法用于2D和3D模型估计的特征提取。 RANSAC特征提取算法配备了闭合校准方法以实现自动校准。结果:从实验中获取的校准的准确性,精度和形状重建误差与先前的文献报告显着匹配。结论:结果表明,与人类执行的常规提取相比,我们所提出的方法具有高效率来进行自动特征提取。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号