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Titlebook: Advances in CT IV; 4th International Sc Gabriel P. Krestin (Professor and Chairman),Gary M Conference proceedings 1998 Springer-Verlag Berl

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期刊全稱(chēng)Advances in CT IV
期刊簡(jiǎn)稱(chēng)4th International Sc
影響因子2023Gabriel P. Krestin (Professor and Chairman),Gary M
視頻videohttp://file.papertrans.cn/147/146971/146971.mp4
圖書(shū)封面Titlebook: Advances in CT IV; 4th International Sc Gabriel P. Krestin (Professor and Chairman),Gary M Conference proceedings 1998 Springer-Verlag Berl
影響因子We are in the midst of major advances in medical imaging, converting static pre- sentation of anatomic information into near real-time interactive imaging and displays capable of depicting both structure and function. This will have pro- found impact on diagnosis and image-guided therapies. These advances have been most notable in the modalities of computed tomog- raphy and magnetic resonance. These technologies have become capable of ac- quiring volumetric images in short periods of time. Speed gains in MRI were very significant in the early 1990s with the development of clinically usable pulse se- quences for gradient-recalled and echo-planar imaging. It appears that further speed gains in MRI will be difficult to achieve. The development of spiral CT has ushered in an era in which major speed gains in CT are also possible. This has enabled creation of new types of applica- tions such as CT angiography, which has already come to replace catheter angio- graphy at many medical centers throughout the world. We are very pleased that the results from industrial and academic laboratories have been transferred to the bedside to improve patient care at a speed that may be faster than in
Pindex Conference proceedings 1998
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Building Responsible AI Algorithms upward trend. This is contrary to many predictions in the late 1980s and early 1990s when a rapid decrease in the use of CT was expected. The introduction of spiral CT and the advent of faster and more powerful scanners specifically designed for volume CT scanning in spiral mode has led to a renaissance of CT.
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Building Responsible AI Algorithmss in the acute setting. Because of the high-speed data acquisition of current CT scanners, detailed information about most facial bone areas may be obtained in a very short period of time, i.e., about 40–60 s.
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https://doi.org/10.1007/978-1-4842-9306-5tive to the length of the cardiac cycle, with motion reconstruction artefacts severely degrading image quality. Despite progressive reductions in exposure time and the development of slip ring technology, the potential for anatomical and functional imaging of the heart has never been fully realised.
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Building Resistance to Stress and Aging body. These detectors have been based on the combination of classical scintillators with photodetectors, e.g., Nal with photomultipliers or Csl (CdWO.) with photo-diodes. Early CT scanners were of the rotate-rotate type with pulsed radiation and change of the direction of rotation from scan to scan
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