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Titlebook: Computed Tomography; Approaches, Applicat Ehsan Samei,Norbert J. Pelc Book 2020 Springer Nature Switzerland AG 2020 CT.CT Systems.Spectral

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发表于 2025-3-21 16:06:28 | 显示全部楼层 |阅读模式
书目名称Computed Tomography
副标题Approaches, Applicat
编辑Ehsan Samei,Norbert J. Pelc
视频videohttp://file.papertrans.cn/234/233273/233273.mp4
概述Presents the current state of CT technology and all its key aspects.Casts the pathway for the future of the field.Serves as a handbook for use by practicing physicians, engineers, scientists, and trai
图书封面Titlebook: Computed Tomography; Approaches, Applicat Ehsan Samei,Norbert J. Pelc Book 2020 Springer Nature Switzerland AG 2020 CT.CT Systems.Spectral
描述This book offers a comprehensive and topical depiction of advances in CT imaging. CT has become a leading medical imaging modality, thanks to its superb spatial and temporal resolution to depict anatomical details. New advances have further extended the technology to provide physiological information, enabling a wide and expanding range of clinical applications. The text covers the latest advancements in CT technology and clinical applications for a variety of CT types and imaging methods. The content is presented in seven parts to offer a structure across a board coverage of CT: CT Systems, CT Performance, CT Practice, Spectral CT, Quantitative CT, Functional CT, and Special Purpose CT. Each contain chapters written by leading experts in the field, covering CT hardware and software innovations, CT operation, CT performance characterization, functional and quantitative applications, and CT systems devised for specific anatomical applications.  This book is an ideal resource for practitioners of CT applications in medicine, including physicians, trainees, engineers, and scientists. .
出版日期Book 2020
关键词CT; CT Systems; Spectral CT; Quantitative CT; Functional CT; Special Purpose CT
版次1
doihttps://doi.org/10.1007/978-3-030-26957-9
isbn_softcover978-3-030-26959-3
isbn_ebook978-3-030-26957-9
copyrightSpringer Nature Switzerland AG 2020
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Cone-Beam CT Systems and U-arms as well as closed-gantry rings. Applications span a spectrum of image-guided interventions (e.g., image-guided radiotherapy, surgery, and interventional radiology) and specialty diagnostic imaging procedures (e.g., dental, ENT, breast, and orthopedics). This chapter surveys the general p
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Novel CT Acquisitionpatial resolution, temporal resolution, and radiation dose efficiency. Many innovative CT acquisition techniques have been developed, aiming to enable novel clinical applications, improve diagnostic performance, and reduce radiation dose. This chapter will provide an overview on various advanced dat
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CT Image Quality Characterizatione quantitative relations between noise, spatial resolution, and CT number of an idealized linear CT system and the associated hardware specifications, acquisition, and reconstruction parameters. The derivations not only highlighted the physical and mathematical foundations of several widely recogniz
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CT Performance Optimizationing factors such as radiation dose. The goals are to (a) understand the theory behind imaging optimization, (b) learn about practical steps that can be taken to ensure imaging consistency across diverse CT systems, and (c) learn about practical steps that can be taken to optimize clinical performanc
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CT Practice Optimizationrotocol design based on a team-based approach, and adjustments of scan parameters according to patient size, body region, and clinical indication. Dose monitoring can identify CT protocols with excessive doses that need attention and modifications. Active surveillance strategies ensure a good diagno
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