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基础X射线物理原理的临床应用。

Clinical applications of basic x-ray physics principles.

作者信息

Schueler B A

机构信息

Department of Diagnostic Radiology, Mayo Clinic, Rochester, MN 55905, USA.

出版信息

Radiographics. 1998 May-Jun;18(3):731-44; quiz 729. doi: 10.1148/radiographics.18.3.9599394.

Abstract

The application of basic x-ray physics principles to clinical radiography requires consideration of many factors that have complex interrelationships. For any given radiographic examination, proper understanding and application of each of these factors is essential. The exposure factors--tube voltage, tube current, and exposure time--determine the basic characteristics of radiation exposure to the patient and image receptor. In addition, equipment factors (focal spot size, grid use, x-ray generator design) and geometry (source-object distance and source-image receptor distance) also influence patient dose and the quality of the radiograph. The basis for evaluation of exposure parameter selection is the optimization of image quality, including contrast, density, motion unsharpness, and geometric unsharpness, while minimizing patient exposure. Selection of radiographic technique often involves consideration of trade-offs between various measures of image quality and exposure.

摘要

将基本的X射线物理原理应用于临床放射摄影需要考虑许多具有复杂相互关系的因素。对于任何给定的放射学检查,正确理解和应用这些因素中的每一个都是至关重要的。曝光因素——管电压、管电流和曝光时间——决定了对患者和图像接收器的辐射暴露的基本特征。此外,设备因素(焦点尺寸、滤线栅使用、X射线发生器设计)和几何因素(源-物体距离和源-图像接收器距离)也会影响患者剂量和射线照片的质量。评估曝光参数选择的基础是优化图像质量,包括对比度、密度、运动模糊和几何模糊,同时将患者暴露降至最低。放射技术的选择通常需要考虑各种图像质量和曝光指标之间的权衡。

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