Phelps M E, Hoffman E J, Huang S C, Kuhl D E
J Nucl Med. 1978 Jun;19(6):635-47.
The ECAT was designed and developed as a positron imaging system capable of providing high contrast, high resolution, quantitative images in two-dimensional (2-D) and tomographic formats. The flexibility in its variety of imaging problems. High (HR), medium (MR), and low (LR) tomographic resolutions are 0.95 +/- 0.1, 1.3 +/- 0.1, and 1.7 +/- 0.1 cm FWHM; high, medium, and low resolutions in 2-D images are 0.85 +/- 0.1, 1.3 +/- 0.1 and 1.7 +/- 0.1, depending on resolution mode employed. ECT system efficiency is 30,100, 15,900, and 9,200 c/sec/muCi/cc with a 20-cm diameter phantom at LR, MR, and HR. Because of the geometric, detector, electronic and shielding design of the system, count-rate capability and linearity are high, with minimum detection of scattered radiation and random coincidence. Measured error agrees well with theoretical statistical predictions down to a level of 1.4% standard deviation. The redundant sampling scheme of this system significantly reduces errors caused by motion and detector instability. Scan times are variable from 10 sec to several min/slice and multiple levels are automatically performed by computer control of patient bed. A variety of human studies illustrate image quality, resolution, and efficiency of both ECT and 2-D imaging mode. Examples of the noninvasive study method have been made possible through development of ECT.
ECAT被设计和开发为一种正电子成像系统,能够以二维(2-D)和断层扫描格式提供高对比度、高分辨率的定量图像。它在各种成像问题上具有灵活性。高(HR)、中(MR)和低(LR)断层分辨率的半高宽分别为0.95±0.1、1.3±0.1和1.7±0.1厘米;二维图像中的高、中、低分辨率分别为0.85±0.1、1.3±0.1和1.7±0.1,具体取决于所采用的分辨率模式。在LR、MR和HR模式下,使用直径为20厘米的模型时,ECT系统效率分别为30100、15900和9200计数/秒/微居里/立方厘米。由于该系统的几何、探测器、电子和屏蔽设计,计数率能力和线性度很高,散射辐射和随机符合的检测最少。测量误差与理论统计预测在1.4%标准差水平上吻合良好。该系统的冗余采样方案显著减少了由运动和探测器不稳定性引起的误差。扫描时间从10秒到几分钟/层不等,通过计算机控制患者床位可自动进行多层扫描。各种人体研究说明了ECT和二维成像模式的图像质量、分辨率和效率。通过ECT的发展,非侵入性研究方法的实例成为可能。