Giacomuzzi S M, Erckert B, Schöpf T, Freund M C, Springer P, Dessl A, Jaschke W
Institut für Radiodiagnostik, Universitätsklinik Innsbruck.
Rofo. 1996 Jul;165(1):10-6. doi: 10.1055/s-2007-1015707.
In this article a new method - the Smart-Scan-Technique - for dose reduction during spiral computed tomography is described. This technique allows a dynamical adaptation of the tube current according to the measured local density structure form and absorption values of the object of interest. Its clinical applicability for dose reduction is investigated. In addition, changes in image quality are evaluated.
Specially designed, water filled plexiglas-phantoms, an Alderson-Rando phantom, and 20 patients were used to simulate possible measures of patients within the thoracic and abdominal region. For those two regions the dose reduction, the modulation transfer function, and the pixel noise were measured.
Depending on patient geometry dose reduction up to 20% could be achieved with the Smart-Scan-Technique. This technique also enabled a decrease of the modulation transfer function and an increase of the pixel noise by 8%.
Relevant dose reductions can be achieved by applying the Smart-Scan-Technique in spiral computed tomography.
本文描述了一种在螺旋计算机断层扫描期间降低剂量的新方法——智能扫描技术。该技术允许根据所测量的感兴趣对象的局部密度结构形式和吸收值动态调整管电流。研究了其在降低剂量方面的临床适用性。此外,还评估了图像质量的变化。
使用专门设计的、充满水的有机玻璃模型、阿尔德森-兰多模型以及20名患者来模拟胸部和腹部区域内患者的可能情况。针对这两个区域测量了剂量降低情况、调制传递函数和像素噪声。
根据患者体型,使用智能扫描技术可实现高达20%的剂量降低。该技术还使调制传递函数降低,像素噪声增加了8%。
在螺旋计算机断层扫描中应用智能扫描技术可实现显著的剂量降低。