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基于模糊 C 均值的脑 MRI 分割技术的最新进展。

Recent Advancements in Fuzzy C-means Based Techniques for Brain MRI Segmentation.

机构信息

College of Computer Engineering and Sciences, Prince Mohammad bin Fahd University, Khobar, Saudi Arabia.

Faculty of Computer Science and Information Technology, Universiti Malaysia, Sarawak, Malaysia.

出版信息

Curr Med Imaging. 2021;17(8):917-930. doi: 10.2174/1573405616666210104111218.

Abstract

BACKGROUND

Variations of image segmentation techniques, particularly those used for Brain MRI segmentation, vary in complexity from basic standard Fuzzy C-means (FCM) to more complex and enhanced FCM techniques.

OBJECTIVE

In this paper, a comprehensive review is presented on all thirteen variations of FCM segmentation techniques. In the review process, the concentration is on the use of FCM segmentation techniques for brain tumors. Brain tumor segmentation is a vital step in the process of automatically diagnosing brain tumors. Unlike segmentation of other types of images, brain tumor segmentation is a very challenging task due to the variations in brain anatomy. The low contrast of brain images further complicates this process. Early diagnosis of brain tumors is indeed beneficial to patients, doctors, and medical providers.

RESULTS

FCM segmentation works on images obtained from magnetic resonance imaging (MRI) scanners, requiring minor modifications to hospital operations to early diagnose tumors as most, if not all, hospitals rely on MRI machines for brain imaging.

CONCLUSION

In this paper, we critically review and summarize FCM based techniques for brain MRI segmentation.

摘要

背景

图像分割技术的变化,特别是用于脑 MRI 分割的技术,从基本的标准模糊 C 均值(FCM)到更复杂和增强的 FCM 技术,其复杂程度各不相同。

目的

本文对 FCM 分割技术的所有 13 种变化进行了全面综述。在综述过程中,重点关注 FCM 分割技术在脑肿瘤中的应用。脑肿瘤分割是自动诊断脑肿瘤过程中的一个重要步骤。与其他类型图像的分割不同,由于脑解剖结构的变化,脑肿瘤的分割是一项极具挑战性的任务。脑图像对比度低进一步增加了这个过程的难度。早期诊断脑肿瘤确实对患者、医生和医疗服务提供者有益。

结果

FCM 分割适用于从磁共振成像(MRI)扫描仪获得的图像,只需对医院的操作进行微小的修改,就可以早期诊断肿瘤,因为大多数(如果不是全部)医院都依赖 MRI 机器进行脑部成像。

结论

本文对基于 FCM 的脑 MRI 分割技术进行了批判性回顾和总结。

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