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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Recognition of Heterogeneous Edges in Multiwavelength Transmission Images Based on the Weighted Constraint Decision Method
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Recognition of Heterogeneous Edges in Multiwavelength Transmission Images Based on the Weighted Constraint Decision Method

机译:基于加权约束决策方法识别多波长透射图像中的异构边缘

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摘要

Multiwavelength light transmission imaging provides a possibility for early detection of breast cancer. However, due to strong scattering during the transmission process of breast tissue analysis, the transmitted image signal is weak and the image is blurred and this makes heterogeneous edge detection difficult. This paper proposes a method based on the weighted constraint decision (WCD) method to eliminate the erosion and checkerboard effects in image histogram equalization (HE) enhancement and to improve the recognition of heterogeneous edge. Multiwavelength transmission images of phantom are acquired on the designed experimental system and the mask image with high signal-to-noise ratio (SNR) is obtained by frame accumulation and an Otsu thresholding model. Then, during image enhancement the image is divided into low-gray-level (LGL) and high-gray-level (HGL) regions according to the distribution of light intensity in image. And the probability density distribution of gray level in the LGL and HGL regions are redefined respectively according to the WCD method. Finally, the reconstructed image is obtained based on the modified HE. The experimental results show that compared with traditional image enhancement methods, the WCD method proposed in this paper can greatly improve the contrast between heterogeneous region and normal region. Moreover, the correlation between the original image data is maintained to the greatest extent, so that the edge of the heterogeneity can be detected more accurately. In conclusion, the WCD method not only accurately identifies the edge of heterogeneity in multiwavelength transmission images, but it also could improve the clinical application of multiwavelength transmission images in the early detection of breast cancer.
机译:多波长光传输成像提供了早期检测乳腺癌的可能性。然而,由于在乳房组织分析的传输过程期间散射强的散射,透射图像信号较弱并且图像模糊,这使得异质边缘检测困难。本文提出了一种基于加权约束判定(WCD)方法的方法,以消除图像直方图均衡(HE)增强和改善异构边缘的识别。在设计的实验系统上获取幻像的多波长传输图像,并且通过帧累积和OTSU阈值模型获得具有高信噪比(SNR)的掩模图像。然后,在图像增强期间,根据图像中的光强度分布,图像被分成低灰度级(LGL)和高灰度(HGL)区域。并且根据WCD方法分别重新定义LGL和HGL区域中灰度级的概率密度分布。最后,基于修改的HE获得重建的图像。实验结果表明,与传统图像增强方法相比,本文提出的WCD方法可以大大改善异构区域和正常区域之间的对比度。此外,原始图像数据之间的相关性在最大程度上保持,从而可以更准确地检测异质性的边缘。总之,WCD方法不仅准确地识别多波长透射图像中的异质性边缘,而且还可以改善多波长透射图像在早期检测乳腺癌中的临床应用。

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