放射学的数字成像、图像处理和三维计算机图形学。

Current opinion in radiology Pub Date : 1992-10-01
M W Vannier
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引用次数: 0

摘要

医学图像的获取及其显示、操作和应用在最近取得了显著进展。利用超快回波平面和快速梯度回波技术的磁共振成像技术在心血管研究以及脑和脊髓研究中得到了广泛的应用。螺旋CT有可能彻底改变一种成熟的模式,但有几个重要的局限性。磁共振成像、CT、超声、正电子发射断层扫描和单光子发射CT等医学断层图像的后处理已经迅速变得越来越重要。我们已经看到这些图像的更新和扩展应用的出现,经过适当处理,通过立体定向技术、血管内超声、机器人手术和集成显示来指导患者治疗程序的规划和执行。三维成像对医疗保健的核心作用是新的,并将继续发展。最近的研究应用出现在神经形态学、多模态配准、功能神经成像、定量冠状动脉造影和心肌组织标记的饱和磁共振技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Digital imaging, image processing, and three-dimensional computer graphics for radiology.

The acquisition of medical images and their display, manipulation, and applications have advanced significantly in the recent past. MR imaging using ultrafast echo planar and fast gradient-echo techniques have expanded application in cardiovascular studies, as well as in the brain and spinal cord. Spiral CT has the potential to revolutionize a well-established modality, subject to several important limitations. The postprocessing of medical sectional images from MR imaging, CT, ultrasound, positron emission tomography, and single-photon emission CT has rapidly grown in importance. We have seen the emergence of renewed and expanded applications of these images, suitably processed, in directing planning and performance of therapeutic procedures on patients through stereotactic techniques, intravascular ultrasound, robot surgery, and integrated displays. This more central role of three-dimensional imaging to medical care is new and will continue to grow. Research applications have recently appeared in neuromorphometry, multimodality registration, functional neuroimaging, quantitative coronary angiography, and saturation MR techniques for myocardial tissue tagging.

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