Litmanovich Diana E, Tack Denis M, Shahrzad Maryam, Bankier Alexander A
From the Department of Radiology, Beth Israel Deaconess Medical Center, 330 Brookline Ave, Shapiro 4, Boston, MA 02215 (D.E.L., M.S., A.A.B.); and Department of Radiology, Epicura Hospital, Baudour, Belgium (D.M.T.).
Radiographics. 2014 Oct;34(6):1469-89. doi: 10.1148/rg.346140084.
Radiation exposure from computed tomography (CT) has received much attention lately in the medical literature and the media, given the relatively high radiation dose that characterizes a CT examination. Although there are a variety of possible strategies for reducing radiation exposure from CT in an individual patient, optimal CT image acquisition requires that the radiologist understand new scanner technology and how to implement the most effective means of dose reduction while maintaining image quality. The authors describe a practical approach to dose reduction in cardiothoracic radiology, discussing CT radiation dose metrics (eg, CT dose index, dose-length product, effective diameter, and size-specific dose estimate) as well as CT scanner parameters that directly or indirectly influence radiation dose (eg, scan length, x-ray tube output, tube current modulation, pitch, image reconstruction techniques [including iterative reconstruction], and noise reduction). These variables are discussed in terms of their relative importance to image quality and the implications of parametric changes for image quality and diagnostic content, and practical recommendations are made for their immediate implementation in the clinical setting. Taken together, the principles of physics and key parameters involved in reducing radiation dose while maintaining image quality can serve as a "survival guide" for a diagnostic radiology practice.
鉴于计算机断层扫描(CT)检查具有相对较高的辐射剂量,其辐射暴露问题近来在医学文献和媒体中备受关注。尽管有多种可能的策略可减少个体患者接受CT检查时的辐射暴露,但要实现最佳的CT图像采集,放射科医生需要了解新的扫描仪技术,以及如何在保持图像质量的同时采用最有效的剂量降低方法。作者描述了一种在心胸放射学中降低剂量的实用方法,讨论了CT辐射剂量指标(如CT剂量指数、剂量长度乘积、有效直径和体型特异性剂量估计)以及直接或间接影响辐射剂量的CT扫描仪参数(如扫描长度、X射线管输出、管电流调制、螺距、图像重建技术[包括迭代重建]和降噪)。文中根据这些变量对图像质量的相对重要性以及参数变化对图像质量和诊断内容的影响进行了讨论,并针对如何在临床环境中立即实施这些变量提出了实用建议。综合来看,在保持图像质量的同时减少辐射剂量所涉及的物理原理和关键参数可作为诊断放射学实践的“生存指南”。