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首页> 外文期刊>Journal of medical engineering & technology >Dynamic infrared imaging in identification of breast cancer tissue with combined image processing and frequency analysis.
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Dynamic infrared imaging in identification of breast cancer tissue with combined image processing and frequency analysis.

机译:动态红外成像结合图像处理和频率分析,可用于乳腺癌组织的识别。

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摘要

Five combinations of image-processing algorithms were applied to dynamic infrared (IR) images of six breast cancer patients preoperatively to establish optimal enhancement of cancer tissue before frequency analysis. mid-wave photovoltaic (PV) IR cameras with 320x254 and 640x512 pixels were used. The signal-to-noise ratio and the specificity for breast cancer were evaluated with the image-processing combinations from the image series of each patient. Before image processing and frequency analysis the effect of patient movement was minimized with a stabilization program developed and tested in the study by stabilizing image slices using surface markers set as measurement points on the skin of the imaged breast. A mathematical equation for superiority value was developed for comparison of the key ratios of the image-processing combinations. The ability of each combination to locate the mammography finding of breast cancer in each patient was compared. Our results show that data collected with a 640x512-pixel mid-wave PV camera applying image-processing methods optimizing signal-to-noise ratio, morphological image processing and linear image restoration before frequency analysis possess the greatest superiority value, showing the cancer area most clearly also in the match centre of the mammography estimation.
机译:术前将五种图像处理算法组合应用于六名乳腺癌患者的动态红外(IR)图像,以在频率分析之前确定癌症组织的最佳增强。使用具有320x254和640x512像素的中波光伏(PV)红外热像仪。使用来自每个患者图像系列的图像处理组合,评估了乳腺癌的信噪比和特异性。在图像处理和频率分析之前,通过在研究中开发和测试的稳定程序通过使用设置为成像乳房皮肤上的测量点的表面标记来稳定图像切片,从而将患者运动的影响降至最低。为比较图像处理组合的关键比率,开发了一个优越性值的数学方程式。比较了每种组合在每位患者中定位乳腺X线照片的能力。我们的结果表明,使用640x512像素中波PV相机收集的数据采用图像处理方法优化信噪比,形态图像处理和频率分析之前的线性图像恢复,具有最大的优势值,显示出癌症区域最多显然在乳腺X射线摄影估计的匹配中心。

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