An Introduction to Microwave Imaging for Breast Cancer Detection

Nonfiction, Science & Nature, Science, Physics, Radiation, Health & Well Being, Medical, Medical Science, Diagnostic Imaging
Cover of the book An Introduction to Microwave Imaging for Breast Cancer Detection by , Springer International Publishing
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: ISBN: 9783319278667
Publisher: Springer International Publishing Publication: July 13, 2016
Imprint: Springer Language: English
Author:
ISBN: 9783319278667
Publisher: Springer International Publishing
Publication: July 13, 2016
Imprint: Springer
Language: English

This book collates past and current research on one of the most promising emerging modalities for breast cancer detection. Readers will discover how, as a standalone technology or in conjunction with another modality, microwave imaging has the potential to provide reliable, safe and comfortable breast exams at low cost. Current breast imaging modalities include X- ray, Ultrasound, Magnetic Resonance Imaging, and Positron Emission Tomography. Each of these methods suffers from limitations, including poor sensitivity or specificity, high cost, patient discomfort, and exposure to potentially harmful ionising radiation. Microwave breast imaging is based on a contrast in the dielectric properties of breast tissue that exists at microwave frequencies.

The book begins by considering the anatomy and dielectric properties of the breast, contrasting historical and recent studies. Next, radar-based breast imaging algorithms are discussed, encompassing both early-stage artefact removal, and data independent and adaptive beamforming algorithms. In a similar fashion, microwave tomographic reconstruction algorithms are reviewed in the following chapter, introducing the reader to both the fundamental and more advanced algorithms. Apart from imaging, the book also reviews research efforts in extracting clinically useful information from the Radar Target Signature of breast tumours, which is used to classify tumours as either benign or malignant. Finally, the book concludes by describing the current state of the art in terms of prototype microwave breast imaging systems, with a particular emphasis on those which have progressed to the clinical evaluation stage.

This work is motivated by the fact that breast cancer is one of the leading causes of death amongst women in Europe and the US, and the second most common cancer in the world today. Such an important area of research will appeal to many scholars and practitioners.p>

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This book collates past and current research on one of the most promising emerging modalities for breast cancer detection. Readers will discover how, as a standalone technology or in conjunction with another modality, microwave imaging has the potential to provide reliable, safe and comfortable breast exams at low cost. Current breast imaging modalities include X- ray, Ultrasound, Magnetic Resonance Imaging, and Positron Emission Tomography. Each of these methods suffers from limitations, including poor sensitivity or specificity, high cost, patient discomfort, and exposure to potentially harmful ionising radiation. Microwave breast imaging is based on a contrast in the dielectric properties of breast tissue that exists at microwave frequencies.

The book begins by considering the anatomy and dielectric properties of the breast, contrasting historical and recent studies. Next, radar-based breast imaging algorithms are discussed, encompassing both early-stage artefact removal, and data independent and adaptive beamforming algorithms. In a similar fashion, microwave tomographic reconstruction algorithms are reviewed in the following chapter, introducing the reader to both the fundamental and more advanced algorithms. Apart from imaging, the book also reviews research efforts in extracting clinically useful information from the Radar Target Signature of breast tumours, which is used to classify tumours as either benign or malignant. Finally, the book concludes by describing the current state of the art in terms of prototype microwave breast imaging systems, with a particular emphasis on those which have progressed to the clinical evaluation stage.

This work is motivated by the fact that breast cancer is one of the leading causes of death amongst women in Europe and the US, and the second most common cancer in the world today. Such an important area of research will appeal to many scholars and practitioners.p>

More books from Springer International Publishing

Cover of the book Transients for Electrical Engineers by
Cover of the book Psychotherapy, Literature and the Visual and Performing Arts by
Cover of the book Supervisor Localization by
Cover of the book Coordinating Organismal Physiology Through the Unfolded Protein Response by
Cover of the book Extreme Sports, Extreme Bodies by
Cover of the book Law and Regulation of Aerodromes by
Cover of the book Machine Learning in Medicine - a Complete Overview by
Cover of the book De Sitter Projective Relativity by
Cover of the book Perinatal Tissue-Derived Stem Cells by
Cover of the book Fair Trial and Judicial Independence by
Cover of the book Computer Aided Systems Theory – EUROCAST 2015 by
Cover of the book Concise Computer Mathematics by
Cover of the book Galactic and Intergalactic Magnetic Fields by
Cover of the book Service Life and Durability of Reinforced Concrete Structures by
Cover of the book Thermal Protection Modeling of Hypersonic Flying Apparatus by
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy