Huang H K, Aberle D R, Lufkin R, Grant E G, Hanafee W N, Kangarloo H
Department of Radiological Sciences, UCLA School of Medicine 90024.
Ann Intern Med. 1990 Feb 1;112(3):203-20. doi: 10.7326/0003-4819-112-3-203.
The field of medical imaging, stimulated by advances in digital and communication technologies, has grown tremendously. New imaging techniques that reveal greater anatomical detail are available in most diagnostic radiology departments. We discuss vascular imaging with ultrasound, high-resolution computed tomography of the thorax, magnetic resonance imaging applications, and picture archiving and communication systems. Vascular imaging with ultrasound requires duplex and color flow Doppler, which combine gray-scale ultrasound and the Doppler phenomenon. High-resolution computed tomography modifies conventional computed tomography technology and results in images with higher spatial resolution. Magnetic resonance imaging applications for all areas of the body are being investigated and are replacing older roentgenographic techniques such as computed tomography, arthrography, myelography, and even angiography in a growing number of indications. With these new digital imaging modalities, image management has become an important consideration that can be addressed by picture archiving and communication systems.
在数字和通信技术进步的推动下,医学成像领域得到了极大的发展。大多数诊断放射科都有能显示更详细解剖结构的新成像技术。我们将讨论超声血管成像、胸部高分辨率计算机断层扫描、磁共振成像应用以及图像存档与通信系统。超声血管成像需要使用双功和彩色血流多普勒技术,该技术将灰阶超声和多普勒现象结合在一起。高分辨率计算机断层扫描改进了传统的计算机断层扫描技术,能生成具有更高空间分辨率的图像。目前正在研究磁共振成像在身体各个部位的应用,并且在越来越多的适应症中,磁共振成像正在取代诸如计算机断层扫描、关节造影、脊髓造影甚至血管造影等旧的X射线技术。有了这些新的数字成像方式,图像管理已成为一个重要的考量因素,而图像存档与通信系统可以解决这一问题。