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Digital recovery of biomedical signals from binary images

机译:从二进制图像数字恢复生物医学信号

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摘要

Given the vast amount of historical clinical data to be incorporated from old hospital information systems into new emerging digital storing standards, digital recovery of paper-written one-dimensional biomedical signals is a relevant application. Signal recovery from noisy, black and white, grid paper printout recordings, is a real situation that has received little attention in the literature. In this paper we propose an integral, automatic approach, based on digital image processing principles, and implemented in four stages: (1) orientation correction of the scanned image, using the eigenvector decomposition of the foreground pixel coordinates, hence reducing the computational cost of subsequent Hough Transform; (2) grid detection, using the Discrete Cosine Transform on horizontal and vertical histogram projections; (3) signal waveform identification, using morphological operators; (4) conversion from the waveform in the image plane to the one-dimensional biomedical signal. Time synchronization between the digitized gold standard and the recovered signals, which is essential for performance evaluation, is addressed by using of contrast filters to extract fiducial points on both signals, which are then fitted to a regression curve. Results with black and white paper printout recordings of intracardiac signals show that proposed approach is capable of automatically recovering biomedical signals from noisy images.
机译:鉴于将大量的历史临床数据从旧的医院信息系统整合到新兴的数字存储标准中,纸质一维生物医学信号的数字恢复是一项相关的应用。从嘈杂的黑白网格纸打印输出记录中恢复信号是一种实际情况,在文献中很少受到关注。在本文中,我们提出了一种基于数字图像处理原理的整体自动方法,并在四个阶段中实施:(1)使用前景像素坐标的特征向量分解对扫描图像进行方向校正,从而降低了图像的计算成本随后的霍夫变换; (2)在水平和垂直直方图投影上使用离散余弦变换进行网格检测; (3)信号形态识别,采用形态学算子; (4)从图像平面中的波形转换为一维生物医学信号。数字黄金标准和恢复的信号之间的时间同步,这对于性能评估至关重要,可通过使用对比滤波器在两个信号上提取基准点来解决,然后将它们拟合到回归曲线上。用黑白纸打印出的心内信号记录的结果表明,所提出的方法能够从嘈杂的图像中自动恢复生物医学信号。

著录项

  • 来源
    《Signal processing》 |2012年第1期|p.43-53|共11页
  • 作者单位

    Signal Theory and Communications Department, G-123, University Reyjuan Carlos, Camino del Molino s, Fuenlabrada-28943, Madrid, Spain;

    Signal Theory and Communications Department, G-123, University Reyjuan Carlos, Camino del Molino s, Fuenlabrada-28943, Madrid, Spain;

    Signal Theory and Communications Department, G-123, University Reyjuan Carlos, Camino del Molino s, Fuenlabrada-28943, Madrid, Spain;

    Cardiology Department, Hospital General Universitario Gregorio Maranon, Madrid, Spain,Electrophysiology Unit, Grupo Hospitales de Madrid, Spain;

    Cardiology Department, Hospital General Universitario Gregorio Maranon, Madrid, Spain;

    Cardiology Department, Hospital General Universitario Gregorio Maranon, Madrid, Spain;

    Arrhythmia Unit, Hospital Virgen de la Arrixaca de Murcia, Spain;

    Signal Theory and Communications Department, G-123, University Reyjuan Carlos, Camino del Molino s, Fuenlabrada-28943, Madrid, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    black and white printout; image processing; morphological operators; biomedical signal digitizing; defibrillator; signal synchronization;

    机译:黑白打印输出;图像处理;形态运算符生物医学信号数字化;除颤器;信号同步;

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