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Quick Detection of Brain Tumor using a Combination of E-M and Levelset Method

机译:结合E-M和Levelset方法快速检测脑肿瘤

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摘要

In medical image processing, Brain tumor segmentation from MRI scan slice without human intervention has become one of the most challenging area in research.MR image slices usually contain a significant amount of noise caused by operator interactions, environmental or external factors, machines used etc, which in turn may cause serious segmentation inaccuracy. Our main aim is to recognize a tumour and its quantification from a specific MRI scan of a brain image to obtain the best segmentation in minimum time. In this paper, we are trying to develop a robust segmentation technique, by combining two segmentation algorithms, expectation maximization and level set. This algorithm framework composed of three stages. 1. Pre-processing is used for background separation of brain; it can be also called as pre-segmentation method 2. Abnormal regions in brain is detected by using Expectation Maximization (EM) algorithm and in 3. A level set method to sharpen the segmented EM output to get sharp and accurate boundaries. At the end of the process, the tumour region is extracted from the MR images and its exact position and shape is determined with minimum time. The Experimental results clearly define the effectiveness of our approach in its accuracy and computation time when compared with other EM based method.
机译:在医学图像处理中,无需人工干预即可从MRI扫描切片进行脑肿瘤分割已成为研究中最具挑战性的领域之一.MR图像切片通常包含大量噪声,这些噪声是由于操作员的互动,环境或外部因素,所用机器等引起的。进而可能会导致严重的细分错误。我们的主要目的是从脑图像的特定MRI扫描识别肿瘤及其量化,以在最短的时间内获得最佳分割。在本文中,我们试图通过结合期望最大化和水平集这两种分割算法来开发一种鲁棒的分割技术。该算法框架由三个阶段组成。 1.预处理用于大脑的背景分离;它也可以称为预分段方法。2。使用期望最大化(EM)算法和3中的方法检测大脑中的异常区域。一种水平设置方法,用于锐化分段的EM输出以获得清晰准确的边界。在该过程结束时,从MR图像中提取肿瘤区域,并在最短的时间内确定其确切位置和形状。与其他基于EM的方法相比,实验结果清楚地定义了我们的方法在准确性和计算时间方面的有效性。

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