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利用生物启发式分类器提高超声图像肝硬化检测的性能

Exploitation of Bio-Inspired Classifiers for Performance Enhancement in Liver Cirrhosis Detection from Ultrasonic Images.

作者信息

Ramamoorthy Karthikamani, Rajaguru Harikumar

机构信息

Department of ECE, Sri Ramakrishna Engineering College, Tamil Nadu 641022, India.

Department of ECE, Bannari Amman Institute of Technology, Tamil Nadu 638401, India.

出版信息

Biomimetics (Basel). 2024 Jun 14;9(6):356. doi: 10.3390/biomimetics9060356.

Abstract

In the current scenario, liver abnormalities are one of the most serious public health concerns. Cirrhosis of the liver is one of the foremost causes of demise from liver diseases. To accurately predict the status of liver cirrhosis, physicians frequently use automated computer-aided approaches. In this paper, through clustering techniques like fuzzy c-means (FCM), possibilistic fuzzy c-means (PFCM), and possibilistic c means (PCM) and sample entropy features are extracted from normal and cirrhotic liver ultrasonic images. The extracted features are classified as normal and cirrhotic through the Gaussian mixture model (GMM), Softmax discriminant classifier (SDC), harmonic search algorithm (HSA), SVM (linear), SVM (RBF), SVM (polynomial), artificial algae optimization (AAO), and hybrid classifier artificial algae optimization (AAO) with Gaussian mixture mode (GMM). The classifiers' performances are compared based on accuracy, F1 Score, MCC, F measure, error rate, and Jaccard metric (JM). The hybrid classifier AAO-GMM, with the PFCM feature, outperforms the other classifiers and attained an accuracy of 99.03% with an MCC of 0.90.

摘要

在当前情况下,肝脏异常是最严重的公共卫生问题之一。肝硬化是肝病死亡的主要原因之一。为了准确预测肝硬化的状况,医生经常使用自动化的计算机辅助方法。在本文中,通过模糊c均值(FCM)、可能性模糊c均值(PFCM)和可能性c均值(PCM)等聚类技术,从正常和肝硬化肝脏超声图像中提取样本熵特征。通过高斯混合模型(GMM)、Softmax判别分类器(SDC)、谐波搜索算法(HSA)、支持向量机(线性)、支持向量机(径向基函数)、支持向量机(多项式)、人工藻类优化(AAO)以及人工藻类优化(AAO)与高斯混合模型(GMM)的混合分类器,将提取的特征分类为正常和肝硬化。基于准确率、F1分数、马修斯相关系数(MCC)、F度量、错误率和杰卡德度量(JM)对分类器的性能进行比较。具有PFCM特征的混合分类器AAO - GMM优于其他分类器,准确率达到99.03%,MCC为0.90。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b81e/11201414/1264cffb5a65/biomimetics-09-00356-g001.jpg

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