Quantitative ultrasound and photoacoustic imaging for the assessment of vascular parameters / Kristen M. Meiburger.
2017
TA367
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Title
Quantitative ultrasound and photoacoustic imaging for the assessment of vascular parameters / Kristen M. Meiburger.
Author
Meiburger, Kristen M.
ISBN
9783319489988 (electronic book)
3319489984 (electronic book)
3319489976
9783319489971
3319489984 (electronic book)
3319489976
9783319489971
Publication Details
Cham, Switzerland : Springer, ©2017.
Language
English
Description
1 online resource.
Item Number
10.1007/978-3-319-48998-8 doi
Call Number
TA367
Dewey Decimal Classification
620.2/8
Summary
This book describes the development of quantitative techniques for ultrasound and photoacoustic imaging in the assessment of architectural and vascular parameters. It presents morphological vascular research based on the development of quantitative imaging techniques for the use of clinical B-mode ultrasound images, and preclinical architectural vascular investigations on quantitative imaging techniques for ultrasounds and photoacoustics. The book is divided into two main parts, the first of which focuses on the development and validation of quantitative techniques for the assessment of vascular morphological parameters that can be extracted from B-mode ultrasound longitudinal images of the common carotid artery. In turn, the second part highlights quantitative imaging techniques for assessing the architectural parameters of vasculature that can be extracted from 3D volumes, using both contrast-enhanced ultrasound (CEUS) imaging and photoacoustic imaging without the addition of any contrast agent. Sharing and summarizing the outcomes of this important research, the book will be of interest to a broad range of researchers and practitioners in the fields of medical imaging and biomedical engineering.
Bibliography, etc. Note
Includes bibliographical references.
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text file PDF
Source of Description
Description based on print version record.
Series
PoliTO Springer series.
Available in Other Form
Quantitative ultrasound and photoacoustic imaging for the assessment of vascular parameters.
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Table of Contents
Introduction
Automated IMT carotid artery far wall segmentation techniques
Validation of the carotid intima-media thickness variability (IMTV).-Quantitative assessment of cancer vascular architecture by skeletonization of 3D CEUS Images
Skeletonization based blood vessel quantification algorithm for in vivo photoacoustic 3D images
Conclusions and Final Remarks.
Automated IMT carotid artery far wall segmentation techniques
Validation of the carotid intima-media thickness variability (IMTV).-Quantitative assessment of cancer vascular architecture by skeletonization of 3D CEUS Images
Skeletonization based blood vessel quantification algorithm for in vivo photoacoustic 3D images
Conclusions and Final Remarks.