磁共振图像增强在脑肿瘤检测中的应用

Deena Abin, Govind Mudavadkar, Rakesh Minase, Mridul Handoo, R. Kumawat
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引用次数: 0

摘要

磁共振成像也被称为MRI,是医学图像处理中的一项重要技术,它提供了关于人体软组织结构的重要信息。由于MRI被用于诊断许多与脑相关的严重疾病,如脑肿瘤和脊髓肿瘤,因此大量医学研究人员和医生认为对采集的脑图像进行图像增强是很重要的。尽管技术在进步,但是每一幅图像都有一些不足,比如噪声、低对比度、低亮度。为了解决这些与MRI图像相关的问题,各种直方图均衡化技术如HE、CLAHE、BBHE、DSIHE、RMSHE和Fuzzification及其杂交技术被应用于不同的MRI图像。熵、PIQE和BRISQUE等指标被用来评估研究结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MRI Image Enhancement for Brain Tumor Detection using Hybridization of Contrast Enhancement Techniques
Magnetic Resonance Imaging also known as MRI is a significant technology used in medical image processing that provides important information on the structure of human soft tissue. As MRI is used to diagnose numerous brain-related severe illnesses, such as brain tumors and spinal cord tumors, image enhancement of the collected brain images is considered to be important by a large number of medical researchers and doctors. Despite the progress of technology, every image has some deficiencies, such as noise, low contrast, low brightness. To solve these issues related to MRI images, various histogram equalization techniques for example HE, CLAHE, BBHE, DSIHE, RMSHE, and Fuzzification and their hybridizations are applied to different MRI images. Metrics such as entropy, PIQE, and BRISQUE are used to evaluate the findings.
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