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Semiautomatic Segmentation of Glioma on Mobile Devices

机译:在移动设备上的神经胶质瘤半自动分割

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摘要

Brain tumor segmentation is the first and the most critical step in clinical applications of radiomics. However, segmenting brain images by radiologists is labor intense and prone to inter- and intraobserver variability. Stable and reproducible brain image segmentation algorithms are thus important for successful tumor detection in radiomics. In this paper, we propose a supervised brain image segmentation method, especially for magnetic resonance (MR) brain images with glioma. This paper uses hard edge multiplicative intrinsic component optimization to preprocess glioma medical image on the server side, and then, the doctors could supervise the segmentation process on mobile devices in their convenient time. Since the preprocessed images have the same brightness for the same tissue voxels, they have small data size (typically 1/10 of the original image size) and simple structure of 4 types of intensity value. This observation thus allows follow-up steps to be processed on mobile devices with low bandwidth and limited computing performance. Experiments conducted on 1935 brain slices from 129 patients show that more than 30% of the sample can reach 90% similarity; over 60% of the samples can reach 85% similarity, and more than 80% of the sample could reach 75% similarity. The comparisons with other segmentation methods also demonstrate both efficiency and stability of the proposed approach.
机译:脑肿瘤分割是放射性药物临床应用中的第一步,也是最关键的一步。但是,放射科医生对脑部图像进行分割非常费力,并且容易出现观察者之间和观察者内部的差异。因此,稳定和可重现的脑图像分割算法对于放射线学中成功的肿瘤检测非常重要。在本文中,我们提出了一种有监督的脑图像分割方法,特别是针对脑胶质瘤的磁共振(MR)脑图像。本文使用硬边可乘固有成分优化技术在服务器端对神经胶质瘤医学图像进行预处理,然后医生可以在方便的时候监督移动设备上的分割过程。由于预处理后的图像对于相同的组织体素具有相同的亮度,因此它们的数据大小较小(通常是原始图像大小的1/10),并且具有4种强度值的简单结构。因此,该观察结果允许在具有低带宽和有限的计算性能的移动设备上处理后续步骤。对来自129位患者的1935年脑切片进行的实验表明,超过30%的样本可以达到90%的相似度;超过60%的样本可以达到85%的相似度,而超过80%的样本可以达到75%的相似度。与其他分割方法的比较也证明了该方法的有效性和稳定性。

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