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Auto-cropping of phone camera color images to segment cardiac signals in ECG printouts

机译:自动裁剪手机摄像头彩色图像以在ECG打印输出中分割心脏信号

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Digital analysis of the bio-electrical signals allows us to obtain valuable information for clinical and research purposes. Despite current devices record and store the digital electrical signal, in some cases only a printout version is available. Although previous research focused on algorithms to digitize a scanned version of the printed signal, nowadays a color image of the printout can be immediately obtained with a cell phone. Most of these algorithms digitize the signals after manually selecting from the whole image one sub-image per signal to digitize. Here, propose a procedure to automatically crop the image to get as many sub-images as signals are in the ECG printout. First, the perspective distortion is corrected. Then, an image I mainly containing the grid, is obtained from a transformation of the RGB space to another colorspace taking advantage of the grid chromatic characteristics. The grayscale image, G, and I are morphologically processed to emphasize both signal and grid in G, and just grid in I. Boundaries between contiguous signals are set by means of projections and morphological operations. Thirty one phone camera color images of 12-lead-ECG printouts were used for evaluation. Experiments were conducted with images with different spatial resolutions and quality factors according to the jpeg compressor. Our procedure worked correctly when the tracing of consecutive leads did not overlap in the amplitude axis and the spatial resolution and the quality factor were higher than 0.25 (one-fourth of the original size) and 40%, respectively.
机译:生物电信号的数字分析使我们能够获得有价值的信息,以用于临床和研究目的。尽管当前的设备会记录和存储数字电信号,但在某些情况下仅提供打印版本。尽管先前的研究集中在将打印信号的扫描版本数字化的算法上,但是如今,可以使用手机立即获得打印输出的彩色图像。在从整个图像中手动选择每个信号一个子图像进行数字化之后,这些算法中的大多数将信号数字化。在这里,提出一个程序来自动裁剪图像以获得与ECG打印输出中的信号一样多的子图像。首先,校正透视畸变。然后,利用网格色特性,从RGB空间到另一颜色空间的变换中获得主要包含网格的图像I。对灰度图像G和I进行形态学处理,以强调G中的信号和网格,而仅强调I中的网格。连续信号之间的边界通过投影和形态运算来设置。使用12导联心电图打印输出的31个电话摄像头彩色图像进行评估。根据jpeg压缩器,使用具有不同空间分辨率和质量因子的图像进行了实验。当连续的引线在振幅轴上不重叠并且空间分辨率和质量因子分别大于0.25(原始大小的四分之一)和40%时,我们的程序正确工作。

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