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Titlebook: Radiation Dose from Multidetector CT; Denis Tack,Mannudeep K. Kalra,Pierre Alain Gevenoi Book 2012Latest edition Springer-Verlag Berlin He

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,Multi-Detector Row CT–Recent Developments, Radiation Dose and Dose Reduction Technologies,utomatically translate into improved clinical performance. Consequently, recent CT developments have focused on solving remaining limitations of multi-detector row CT, such as limited potential to dynamically scan entire organs or insufficient temporal resolution for cardiac imaging. We discuss new
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Clinical Expansion of CT and Radiation Dose, all radiological services to ensure the information required for the clinical management of the patient is obtained with the lowest practicable exposure to radiation. Within this clear objective, however, medical investigation operates in a constantly changing scenario influenced by increasing know
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Image Quality in CT: Challenges and Perspectives,ommon clinical use and includes some references to emerging new technologies and reconstruction methods. A review of the fundamental physics of a CT image is provided along with an explanation of why low kV scanning can be a useful dose reduction strategy if approached cautiously. Measurable image c
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Scan Parameters and CT Radiation Dose, indication for CT has been established, radiologists, physicists and radiologic technologists should work closely to adapt individual scanning parameters that affect radiation dose. Establishing dose-efficient CT protocols is by no means a task simpler than orchestrating a symphony where scan param
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Optimization of Tube Potential for Radiation Dose Reduction in CT,The main benefit of lower tube potentials is the improved enhancement of contrast materials relative to higher tube potentials. However, there is usually increased image noise at lower tube potentials, especially for larger patient sizes. This tradeoff between contrast enhancement and noise requires
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