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Ultrasound-mediated imaging of soft materials

Author: Ram Vasu Mohan; Debasish Kumar Roy; Institute of Physics (Great Britain),
Publisher: Bristol [England] (Temple Circus, Temple Way, Bristol BS1 6HG, UK) : IOP Publishing, [2018]
Series: IOP expanding physics.; Series on advances in optics, photonics and optoelectronics.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
Ultrasound-mediated imaging in scattering media has deeper roots than hitherto imagined, with roots in condensed matter physics. Professors Vasu and Roy discuss these in order to establish a firm connection between measurement and a host of parameters in the medium, mechanical and optical. These connections are verified through recovery of parameters using simulations and experiments. Explaining their research,  Read more...
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Details

Genre/Form: Electronic books
Additional Physical Format: Print version:
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Ram Vasu Mohan; Debasish Kumar Roy; Institute of Physics (Great Britain),
ISBN: 9780750317504 0750317507 9780750317498 0750317493
OCLC Number: 1082881991
Notes: "Version: 20181201"--Title page verso.
Description: 1 online resource : illustrations (chiefly color).
Contents: 1. Introduction --
1.1. General introduction --
1.2. UMOT in the context of optical contrast imaging --
1.3. A brief overview of the work 2. Localized measurement of dynamics and mechanical properties --
2.1. Introduction --
2.2. Theory --
2.3. Extraction of correlation decay introduced by Brownian particles in the ROI --
2.4. Experiments --
2.5. Conclusions 3. Mechanical property distribution from optical measurement of resonant ultrasound spectrum --
3.1. Introduction --
3.2. Young's modulus recovery from measured natural frequency of vibration of ultrasound focal region --
3.3. Recovery of elasticity distribution in an inhomogeneous object 4. Quantitative vibro-acoustography from measurement of modal frequencies : characterisation of isotropic and orthotropic tissue-like objects --
4.1. Introduction --
4.2. Quantitative vibro-acoustography and measurement of resonant modes of region of interest --
4.3. Experiment to measure the natural frequencies --
4.4. Measurement of natural frequencies by ultrasound-assisted diffusing wave spectroscopy --
4.5. Concluding remarks 5. Light diffusion from non-spherical particles : rotational diffusion micro-rheology using ultrasound-assisted diffusing-wave spectroscopy --
5.1. Introduction --
5.2. Light scattering from an ensemble of particles with shape anisotropy --
5.3. Numerical simulation of the particle dynamics --
5.4. Experiments --
5.5. Results and discussions --
5.6. Conclusion 6. Concluding remarks --
Appendices. --
A. Internal noise driven generalized Langevin equation to model the dynamics of scattering centres in ultrasound focal volume --
B. Reconstruction based on stochastic evolution.
Series Title: IOP expanding physics.; Series on advances in optics, photonics and optoelectronics.
Responsibility: Ram Mohan Vasu and Debasish Roy.

Abstract:

Ultrasound-mediated imaging in scattering media has deeper roots than hitherto imagined, with roots in condensed matter physics. Professors Vasu and Roy discuss these in order to establish a firm connection between measurement and a host of parameters in the medium, mechanical and optical. These connections are verified through recovery of parameters using simulations and experiments. Explaining their research, inter alia the authors explore problems such as noise-assisted small-signal amplification, stochastic search schemes for optimization and anisotropic particle diffusion. For graduates and researchers in the field, this book will highlight key features of the developing science and will enable practitioners to adopt the simulation algorithms and experimental modalities presented. Part of IOP Series in Advances in Optics, Photonics and Optoelectronics

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