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Computed Radiation Imaging: Physics And Mathematics Of Forward Inverse Problems
Indigo
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Computed Radiation Imaging: Physics And Mathematics Of Forward Inverse Problems
By None
Current price: $139.99
Original price: $175.00


By None
Computed Radiation Imaging: Physics And Mathematics Of Forward Inverse Problems
Current price: $139.99
Original price: $175.00
Loading Inventory...
Size: Kobo eBook
*Product information may vary - to confirm product availability, pricing, shipping and return information please contact Indigo
Computer-assisted imaging with radiation (x- and gamma rays) is an integral part of modern medical-diagnostic practice. This imaging technology is also slowly finding its way into industrial applications. Although the technology is well developed, there is a need for further improvement to enhance image quality, reduce artifacts, minimize patient radiation exposure, compete with and complement other imaging methods (such as magnetic resonance imaging and ultrasonics), and accommodate dense and large objects encountered in industrial applications. Scientists and engineers, attempting to progress this technology, are faced with an enormous amount of literature, addressing the imaging problem from various view points. This book provides a single source that addresses both the physical and mathematical aspects of the imaging problem in a consistent and comprehensive manner.
Discusses the inherent physical and numerical capabilities and limitations of the methods presented for both the forward and inverse problems
Provides information on available Internet resources and software
Written in a manner that makes it readable by physicists, mathematicians, engineers and computer scientists avoids, as much as possible, the use of specialized terminology without clear introduction and definition
Computer-assisted imaging with radiation (x- and gamma rays) is an integral part of modern medical-diagnostic practice. This imaging technology is also slowly finding its way into industrial applications. Although the technology is well developed, there is a need for further improvement to enhance image quality, reduce artifacts, minimize patient radiation exposure, compete with and complement other imaging methods (such as magnetic resonance imaging and ultrasonics), and accommodate dense and large objects encountered in industrial applications. Scientists and engineers, attempting to progress this technology, are faced with an enormous amount of literature, addressing the imaging problem from various view points. This book provides a single source that addresses both the physical and mathematical aspects of the imaging problem in a consistent and comprehensive manner.
Discusses the inherent physical and numerical capabilities and limitations of the methods presented for both the forward and inverse problems
Provides information on available Internet resources and software
Written in a manner that makes it readable by physicists, mathematicians, engineers and computer scientists avoids, as much as possible, the use of specialized terminology without clear introduction and definition



















