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Ultrasound contrast agents

Targeting and processing methods for theranostics

  • Book
  • © 2010

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Table of contents (13 chapters)

Keywords

About this book

Recent advancements in nano/micro materials and related characterization approaches allow the design of a new type of ultrasound contrast agents (UCAs) with enhanced multifunctional behaviour. This is chance is also supported by the recent achievements in modelling and signal processing. This book provides the state of art of the research activity of two successful European projects, TAMIRUT and SIGHT, addressing an integrated system, encompassing the contrast agent, the hardware equipment and the processing strategies, as a key tool for a combined diagnostic and therapeutic approaches (theranostics) in medical ultrasound. The work provides a highlight of the state of art in the research of novel ultrasound contrast agents (UCAs). Main progresses on the multifunctional aspects of next-generation UCAs concern targeting and drug release properties, perfusion and biointerface behaviour, ultrasound scattering performance, signal processing, electronic equipment.

Reviews

From the reviews: “Leading experts in this field present the latest research and knowledge within 13 chapters from the development of new echogenic injectable agents and devices to interactions with cells and tissues including the development of hard- and software for detecting and evaluating contrast agents - many prominent up-to-date items are covered by this book. … The book is dedicated to leaders with a background in theory who want to deepen their knowledge with up-to-date research results and are interested in ultrasound contrast agents’ future applications.” (Christian Kollmann, Ultraschall in der Medizin, Vol. 31, June, 2010)

Editors and Affiliations

  • Dipartimento di Scienze e Tecnologie Chimiche, Università di Roma Tor Vergata, Rome, Italy

    Gaio Paradossi

  • Esaote — R & D Ultrasuoni, Genoa, Italy

    Paolo Pellegretti

  • Acoustics, Antenna Arrays, and Underwater Signals Lab. Dept. of Biophysical and Electronic Engineering (DIBE), University of Genoa, Genoa, Italy

    Andrea Trucco

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