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3D brain magnetic resonance imaging segmentation by using bitplane and adaptive fast marching

机译:使用位平面和自适应快速行进的3D脑磁共振成像分割

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Diagnosis using medical images helps doctors detect diseases and treat patients effectively. A system that segments objects automatically from magnetic resonance imaging (MRI) plays an important role when doctors diagnose injuries and brain diseases. This article presents a method for automatic brain, scalp, and skull segmentation from MRI that uses Bitplane and the Adaptive Fast Marching method (FMM). We focus on the segmentation of these tissues, especially the brain, because they are the essential objects, and their segmentation is the first step in the segmentation of other tissues. First, the type of each slice is set based on the shape of the brain, and the head region is segmented by removing its background. Second, the sure region and the unsure region are segmented based on the Bitplane method. Finally, this work proposes an approach for classification that is based on the Adaptive FMM. This approach is evaluated with the BrainWeb and Neurodevelopmental MRI databases and compared with other methods. The Dice Averages for brain, scalp, and skull segmentation are 96%, 80%, and 93%, respectively, on the BrainWeb database and 91%, 67%, and 80%, respectively, on the Neurodevelopmental MRI database.
机译:使用医学图像进行诊断有助于医生发现疾病并有效治疗患者。当医生诊断受伤和脑部疾病时,从磁共振成像(MRI)自动分割对象的系统起着重要作用。本文介绍了一种使用位平面和自适应快速行进方法(FMM)从MRI自动进行脑,头皮和颅骨分割的方法。我们将重点放在这些组织(尤其是大脑)的分割上,因为它们是必不可少的对象,而它们的分割是其他组织分割的第一步。首先,根据大脑的形状设置每个切片的类型,然后通过去除其背景来分割头部区域。其次,根据位平面方法对确定区域和不确定区域进行分割。最后,这项工作提出了一种基于自适应FMM的分类方法。该方法通过BrainWeb和Neurodevelopmental MRI数据库进行评估,并与其他方法进行比较。在BrainWeb数据库上,大脑,头皮和颅骨分割的骰子平均值分别在NeuroDevelopmental MRI数据库上分别为96%,80%和93%,在神经发育MRI数据库上分别为91%,67%和80%。

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