Seibert J Anthony
Department of Radiology, University of California Davis, Sacramento, CA 95817, USA.
Health Phys. 2008 Nov;95(5):586-98. doi: 10.1097/01.HP.0000326338.14198.a2.
Digital radiography devices, rapidly replacing analog screen-film detectors, are now common in diagnostic radiological imaging, where implementation has been accelerated by the commodity status of electronic imaging and display systems. The shift from narrow latitude, fixed-speed screen-film detectors to wide latitude, variable-speed digital detectors has created a flexible imaging system that can easily result in overexposures to the patient without the knowledge of the operator, thus potentially increasing the radiation burden of the patient population from radiographic examinations. In addition, image processing can be inappropriately applied causing inconsistent or artifactual appearance of anatomy, which can lead to misdiagnosis. On the other hand, many advantages can be obtained from the variable-speed digital detector, such as an ability to lower dose in many examinations, image post-processing for disease-specific conditions, display flexibility to change the appearance of the image and aid the physician in making a differential diagnosis, and easy access to digital images. An understanding of digital radiography is necessary to minimize the possibility of overexposures and inconsistent results, and to achieve the principle of as low as reasonably achievable (ALARA) for the safe and effective care of all patients. Thus many issues must be considered for optimal implementation of digital radiography, as reviewed in this article.
数字射线照相设备正在迅速取代模拟屏-片探测器,如今在诊断放射成像中已很常见,电子成像和显示系统的商品化加速了其应用。从窄宽容度、固定速度的屏-片探测器向宽宽容度、可变速度的数字探测器的转变,创造了一种灵活的成像系统,在操作员不知情的情况下很容易导致对患者的过度曝光,从而可能增加患者群体因放射检查而承受的辐射负担。此外,图像处理可能应用不当,导致解剖结构的外观不一致或出现伪影,进而可能导致误诊。另一方面,可变速度数字探测器可带来许多优势,例如在许多检查中能够降低剂量、针对特定疾病状况进行图像后处理、具有改变图像外观的显示灵活性并有助于医生进行鉴别诊断,以及方便获取数字图像。了解数字射线照相对于将过度曝光和结果不一致的可能性降至最低,并实现对所有患者进行安全有效护理的合理尽可能低剂量(ALARA)原则是必要的。因此,如本文所综述的,为了数字射线照相的最佳应用,必须考虑许多问题。