Biomedical Signal and Image Examination with Entropy-Based Techniques

基于熵的技术的生物医学信号和图像检查

生物医学工程学

原   价:
1575
售   价:
1260.00
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平台大促 低至8折优惠
发货周期:预计5-7周发货
作      者
出  版 社
出版时间
2020年12月22日
装      帧
精装
ISBN
9780367473945
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页      码
150
开      本
6-1/8 x 9-1/4
语      种
英文
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图书简介
Short Blurb (xxx / 350 characters): The aim of this book is to outline the concept of entropy, various types of entropies and their implementation to evaluate a variety of biomedical signals/images. The book emphasizes various entropy-based image pre-processing methods which are essential for the development of suitable computerized examination systems. Seasonal Blurb (xxx / 700 characters): The aim of this book is to outline the concept of entropy, various types of entropies and their implementation to evaluate a variety of biomedical signals/images. The book emphasizes various entropy-based image pre-processing methods which are essential for the development of suitable computerized examination systems. This book is intended for medical image analysts, undergraduate and postgraduate students, researchers, and medical scientists interested in biomedical data evaluation. Standard Blurb / BCC: The aim of this book is to outline the concept of entropy, various types of entropies and their implementation to evaluate a variety of biomedical signals/images. The book emphasizes various entropy-based image pre-processing methods which are essential for the development of suitable computerized examination systems. The recent research works on biomedical signal evaluation confirms that signal analysis provides vital information regarding the physiological condition of the patient, and the efficient evaluation of these signals can help to diagnose the nature and the severity of the disease. This book emphasizes various entropy-based image pre-processing methods which are essential for the development of suitable computerized examination systems for the analysis of biomedical images recorded with a variety of modalities. The work discusses the image pro-processing methods with the Entropies, such as Kapur, Tsallis, Shannon and Fuzzy on a class of RGB-scaled and gray-scaled medical pictures. The performance of the proposed technique is justified with the help of...
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