Description

Book Synopsis
Magnetic resonance systems are used in almost every academic and industrial chemistry, physics and biochemistry department, as well as being one of the most important imaging modalities in clinical radiology. The design of such systems has become increasingly sophisticated over the years. Static magnetic fields increase continuously, large-scale arrays of receive elements are now ubiquitous in clinical MRI, cryogenic technology has become commonplace in high resolution NMR and is expanding rapidly in preclinical MRI, specialized high strength magnetic field gradients have been designed for studying the human connectome, and the commercial advent of ultra-high field human imaging has required new types of RF coils and static shim coils together with extensive electromagnetic simulations to ensure patient safety. This book covers the hardware and engineering that constitutes a magnetic resonance system, whether that be a high-resolution liquid or solid state system for NMR spectroscopy, a preclinical system for imaging animals or a clinical system used for human imaging. Written by a team of experts in the field, this book provides a comprehensive and instructional look at all aspects of current magnetic resonance technology, as well as outlooks for future developments.

Table of Contents
The principles of magnetic resonance and associated hardware; Magnets; Radiofrequency Coils; B0 Shimming Technology; Magnetic Field Gradients; Radiofrequency amplifiers for NMR/MRI; The MR receiver chain; Electromagnetic modelling;

Magnetic Resonance Technology: Hardware and

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    A Hardback by Andrew G Webb

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      Publisher: Royal Society of Chemistry
      Publication Date: Publication Date: 11/05/2016
      ISBN13: 9781782623595, 978-1782623595
      ISBN10: 1782623590

      Description

      Book Synopsis
      Magnetic resonance systems are used in almost every academic and industrial chemistry, physics and biochemistry department, as well as being one of the most important imaging modalities in clinical radiology. The design of such systems has become increasingly sophisticated over the years. Static magnetic fields increase continuously, large-scale arrays of receive elements are now ubiquitous in clinical MRI, cryogenic technology has become commonplace in high resolution NMR and is expanding rapidly in preclinical MRI, specialized high strength magnetic field gradients have been designed for studying the human connectome, and the commercial advent of ultra-high field human imaging has required new types of RF coils and static shim coils together with extensive electromagnetic simulations to ensure patient safety. This book covers the hardware and engineering that constitutes a magnetic resonance system, whether that be a high-resolution liquid or solid state system for NMR spectroscopy, a preclinical system for imaging animals or a clinical system used for human imaging. Written by a team of experts in the field, this book provides a comprehensive and instructional look at all aspects of current magnetic resonance technology, as well as outlooks for future developments.

      Table of Contents
      The principles of magnetic resonance and associated hardware; Magnets; Radiofrequency Coils; B0 Shimming Technology; Magnetic Field Gradients; Radiofrequency amplifiers for NMR/MRI; The MR receiver chain; Electromagnetic modelling;

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