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Segmentation for embryonated Egg Images Detection using the K-Means Algorithm in Image Processing

机译:使用K-MEACE算法在图像处理中进行胚胎蛋图像检测的分割

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Image segmentation is often used in the process of detecting separated objects. In this study, the application of image segmentation in the detection of egg fertility. The fertility of eggs in hatching is checked between the seventh day to separate eggs that have embryos (fertile). Application of technology, one of which is image processing, requires a preprocessing process to detect the presence of embryos in eggs. In this research, the preprocessing process can help divide the color image of chicken eggs using K-means Algorithm. K-means used are based on a matrix of color images (three color components, red, green, and blue) with a value of k = 50. The result is a segmented color image. The K-means segmentation image is converted to a grayscale image and processed with image enhancement. The final process is the result of image enhancement morphological processes (dilated with string size six) and converted to black and white images to clarify the segmentation process occurs. Based on experiments, the process can run well, with the value of MSSIM = 0.9995 (Mean of the SSIM), which means that the image information is under the original image. Besides, the processed object gives a clear picture of the embryo in the egg, which shows that k-means segmentation can help the process of detecting the presence or absence of embryos in the egg.
机译:图像分割通常用于检测分离对象的过程中。在本研究中,在卵生育能力检测中的应用在图像分割中的应用。在第七天之间检查孵化中鸡蛋的生育能力,将卵子分开胚胎(肥沃)。技术的应用,其中一个是图像处理,需要预处理过程来检测卵中胚胎的存在。在本研究中,预处理过程可以帮助使用K-Means算法划分鸡蛋的彩色图像。使用的K-means基于具有k = 50值的彩色图像(三种颜色分量,红色,绿色和蓝色)的矩阵。结果是分段彩色图像。 K-Means分段图像被转换为​​灰度图像并用图像增强处理。最终过程是图像增强形态过程的结果(用弦尺寸六个扩张)并转换为黑白图像以澄清发生分割过程。基于实验,该过程可以运行良好,MSSIM = 0.9995的值(SSIM的平均值),这意味着图像信息位于原始图像下。此外,加工的对象在卵中透明胚胎上的胚胎图像,表明K-Means分割可以帮助检测卵中胚胎的存在或不存在的过程。

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