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Titlebook: Quantitative Ultrasound in Soft Tissues; Jonathan Mamou,Michael L. Oelze Book 20131st edition Springer Science+Business Media Dordrecht 20

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发表于 2025-3-21 19:50:22 | 显示全部楼层 |阅读模式
书目名称Quantitative Ultrasound in Soft Tissues
编辑Jonathan Mamou,Michael L. Oelze
视频video
概述Comprehensive state of the art review of quantitative ultrasound methods in tissues.Novel review of ultrasonic backscatter estimation.Large set of clinical applications of quantitative ultrasound
图书封面Titlebook: Quantitative Ultrasound in Soft Tissues;  Jonathan Mamou,Michael L. Oelze Book 20131st edition Springer Science+Business Media Dordrecht 20
描述Due to parallel advances in signal processing and computer hardware in the last 15 years, quantitative ultrasound techniques have reached maturity, allowing for the construction of quantitative maps or images of soft tissues. This book will focus on 5 modern research topics related to quantitative ultrasound of soft tissues: - Spectral-based methods for tissue characterization, tissue typing, cancer detection, etc.; - Envelope statistics analysis as a means of quantifying and imaging tissue properties; - Ultrasound elastography for quantifying elastic properties of tissues (several clinical ultrasound scanners now display elastography images); - Scanning acoustic microscopy for forming images of mechanical properties of soft tissues with micron resolution (desktop size scanners are now available); and - Ultrasound computer tomography for breast cancer imaging (new ultrasound tomography systems have been developed and are currently under evaluation clinically).
出版日期Book 20131st edition
关键词Acoustic microscopy; Backscatter; Quantitative ultrasound; Tissue characterization; Ultrasound methods
版次1
doihttps://doi.org/10.1007/978-94-007-6952-6
isbn_softcover978-94-024-0210-0
isbn_ebook978-94-007-6952-6
copyrightSpringer Science+Business Media Dordrecht 2013
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发表于 2025-3-21 20:17:35 | 显示全部楼层
Statistics of Scatterer Property Estimatesiance to be quantified. This chapter discusses the statistics of QUS property estimation, the effects of estimate bias and variance on the resolution of QUS parameter imaging, and techniques to reduce the variance of different QUS property estimates.
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Quantitative Ultrasound and Cell Death data from clinical applications of this work have also demonstrated that QUS techniques can distinguish between clinically responding or non-responding breast cancer patients during the course of neo-adjuvant treatment. As such, QUS at conventional frequencies is expected to provide rapid, non-inva
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Therapy Monitoring and Assessment Using Quantitative Ultrasoundegions. The treated regions can be clearly distinguished in ultrasound images as hyperechoic areas. When liver tissues were treated with heat, a change in the slope of the frequency dependence of the backscatter coefficient versus thermal dose was observed. QUS changes were examined versus transient
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The Quantitative Ultrasound Diagnosis of Liver Fibrosis Using Statistical Analysis of the Echo Envelliver quantitatively, the relationship between the scatterer distribution and the PDF of echo envelopes of inhomogeneous scattering media using computer simulations was examined. Based on these simulations, the analysis parameters in the simulated fibrotic tissue were successfully used to characteri
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Recent Applications of Acoustic Microscopy for Quantitative Measurement of Acoustic Properties of Soltrasound can be used for assessing echo intensity and texture in clinical echography with lower frequency ultrasound. Third, SAM data can provide the basic data for assessing biomechanics of tissues and cells. Ultrasound is transmitted through a coupling medium and focused on the surface of the sub
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Acoustic Microscopy of CellsMHz provided information that could not be obtained using other scanning methods. Variations in the ultrasound backscatter were observed over time, which suggests that rapid changes in the ultrasound scattering structures occur within seconds. In contrast, non-apoptotic cells did not show the same a
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Clinical Results with Ultrasound Computed Tomography of the Breast. There has been steady progress in electronics, parallel processors, reconstruction algorithms, understanding of the physical properties of breast tissue and a resurgence of interest in the medical community for dedicated breast ultrasound systems. It is understood today that USCT may be able to co
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