首页> 外文期刊>Computational and mathematical methods in medicine >Finger Vein Segmentation from Infrared Images Based on a Modified Separable Mumford Shah Model and Local Entropy Thresholding
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Finger Vein Segmentation from Infrared Images Based on a Modified Separable Mumford Shah Model and Local Entropy Thresholding

机译:基于修饰的可分离Mumford Shah模型的红外图像的手指静脉分割和局部熵阈值

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A novel method for finger vein pattern extraction from infrared images is presented. This method involves four steps: preprocessing which performs local normalization of the image intensity, image enhancement, image segmentation, and finally postprocessing for image cleaning. In the image enhancement step, an image which will be both smooth and similar to the original is sought. The enhanced image is obtained by minimizing the objective function of a modified separable Mumford Shah Model. Since, this minimization procedure is computationally intensive for large images, a local application of the Mumford Shah Model in small window neighborhoods is proposed. The finger veins are located in concave nonsmooth regions and, so, in order to distinct them from the other tissue parts, all the differences between the smooth neighborhoods, obtained by the local application of the model, and the corresponding windows of the original image are added. After that, veins in the enhanced image have been sufficiently emphasized. Thus, after image enhancement, an accurate segmentation can be obtained readily by a local entropy thresholding method. Finally, the resulted binary image may suffer from some misclassifications and, so, a postprocessing step is performed in order to extract a robust finger vein pattern.
机译:提出了一种新的红外图像静脉图案提取的新方法。该方法涉及四个步骤:预处理,其执行图像强度,图像增强,图像分割的局部归一化,最终对图像清洁进行后处理。在图像增强步骤中,寻求将是平滑且与原始相似的图像。通过最小化改进的可分离Mumford Shah模型的目标函数来获得增强的图像。由于,这种最小化程序是计算大量图像的强化,提出了在小窗口邻域中的Mumford Shah模型的局部应用。手指静脉位于凹入的非影像区域中,因此,为了使它们与其他组织部件不同,通过模型的本地应用获得的平滑邻域之间的所有差异,以及原始图像的相应窗口所获得的添加。之后,已经充分强调了增强图像中的静脉。因此,在图像增强之后,可以通过局部熵阈值阈值方法容易地获得精确的分割。最后,产生的二进制图像可能遭受一些错误分类,因此,执行后处理步骤以提取鲁棒的手指静脉图案。

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