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Titlebook: Quantification of Biophysical Parameters in Medical Imaging; Ingolf Sack,Tobias Schaeffter Book 2024Latest edition The Editor(s) (if appli

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Book 2024Latest editionnt, and quantitative biomarkers. These methods are greatly detailed in the book. Alternatively, this new edition equips the reader with a better understanding of how the physical properties of tissues interact with signal generation in medical imaging, opening up new insights into the complex and fa
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Mathematical Methods in Medical Image Processingserve as an introduction to and a survey of mathematical methods for medical imaging problems with a specific focus on sparsity-based methods. The effectiveness of the presented methods is demonstrated with a small case study from sparse parallel magnetic resonance imaging.
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Acceleration Strategies for Data Sampling in Magnetic Resonance Imagingatially encoded and how image information can be reconstructed from this raw data. Furthermore, approaches that reduce scan times by making data acquisition faster or by reducing the amount of required raw data will be discussed.
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4D Flow MRI This chapter will cover the basic techniques of MR velocity encoding, current acquisition strategies and practical aspects, postprocessing of the acquired data, current limitations, and an overview of current and future research directions.
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Fundamentals of X-Ray Computed Tomography: Acquisition and Reconstructionte kidney injury are the two major challenges for CT. This chapter briefly summarizes the clinical use of CT and presents the physical and technical basis of CT data acquisition and image reconstruction.
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Introduction: Medical Imaging for the Quantitative Measurement of Biophysical Parameters,uted tomography, magnetic resonance imaging, three-dimensional ultrasound, and emission tomography (positron emission tomography, single-photon emission computed tomography). However, the current radiological practice is based on visual inspection of images, and most diseases are rated in qualitativ
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