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Innovative ultrasound imaging techniques : biomedical applications / coordinated by S. Lori Bridal

Contributor(s): Material type: TextTextSeries: Sciences. Image. Imagery in life sciencesPublisher: London, UK : ISTE Ltd ; Hoboken NJ : John Wiley & Sons, Inc., 2024Copyright date: ©2024Description: 1 online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 1394306601
  • 1394306628
  • 9781394306602
  • 9781394306626
Subject(s): Additional physical formats: Print version:: No titleLOC classification:
  • RC78.7.U4 I56 2024
Online resources: Summary: This book provides an understanding of ultrasound imaging principles and how the field is evolving to better probe living systems. Today, widely-used imaging systems visualize structures and blood flow within the body in real-time. Signal analysis, hardware and contrast agent innovations are extending the capacity of ultrasound to assess tissue elasticity, to enable three-dimensional viewing of moving structures and to detect vessels smaller than the wavelength-limited resolution. Techniques are also being designed so that we are less impeded by bones in the sound path, as well as to combine light and sound to detect optically-absorbent structures within the body. After an introductory chapter reviewing the key basic concepts, each chapter presents a detailed explanation focusing on a specific set of key principles and then shows the related techniques in each domain that are currently being refined to evaluate living systems in greater depth
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E-Book E-Book Merkez Kütüphane Merkez Kütüphane E-Kitap Koleksiyonu Geçerli değil-e-Kitap / Not applicable-e-Book EBK03686

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This book provides an understanding of ultrasound imaging principles and how the field is evolving to better probe living systems. Today, widely-used imaging systems visualize structures and blood flow within the body in real-time. Signal analysis, hardware and contrast agent innovations are extending the capacity of ultrasound to assess tissue elasticity, to enable three-dimensional viewing of moving structures and to detect vessels smaller than the wavelength-limited resolution. Techniques are also being designed so that we are less impeded by bones in the sound path, as well as to combine light and sound to detect optically-absorbent structures within the body. After an introductory chapter reviewing the key basic concepts, each chapter presents a detailed explanation focusing on a specific set of key principles and then shows the related techniques in each domain that are currently being refined to evaluate living systems in greater depth

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