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A paediatric X‐ray exposure chart

机译:儿科X线照射图

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AbstractThe aim of this review was to develop a radiographic optimisation strategy to make use of digital radiography (DR) and needle phosphor computerised radiography (CR) detectors, in order to lower radiation dose and improve image quality for paediatrics. This review was based on evidence-based practice, of which a component was a review of the relevant literature. The resulting exposure chart was developed with two distinct groups of exposure optimisation strategies – body exposures (for head, trunk, humerus, femur) and distal extremity exposures (elbow to finger, knee to toe). Exposure variables manipulated included kilovoltage peak (kVp), target detector exposure and milli-ampere-seconds (mAs), automatic exposure control (AEC), additional beam filtration, and use of antiscatter grid. Mean dose area product (DAP) reductions of up to 83% for anterior–posterior (AP)/posterior–anterior (PA) abdomen projections were recorded postoptimisation due to manipulation of multiple-exposure variables. For body exposures, the target EI and detector exposure, and thus the required mAs were typically 20% less postoptimisation. Image quality for some distal extremity exposures was improved by lowering kVp and increasing mAs around constant entrance skin dose. It is recommended that purchasing digital X-ray equipment with high detective quantum efficiency detectors, and then optimising the exposure chart for use with these detectors is of high importance for sites performing paediatric imaging. Multiple-exposure variables may need to be manipulated to achieve optimal outcomes.
机译:摘要这篇综述的目的是开发一种放射线照相优化策略,以利用数字放射线照相(DR)和针状磷计算机射线照相(CR)检测器,以降低儿科放射剂量并提高图像质量。这次审查是基于循证实践的,其中一部分是对相关文献的审查。最终的暴露表是根据两组不同的暴露优化策略制定的–身体暴露(头部,躯干,肱骨,股骨)和远端暴露(肘到手指,膝盖到脚趾)。操纵的曝光变量包括千伏峰值(kVp),目标检测器的曝光和毫安秒(mAs),自动曝光控制(AEC),附加的光束过滤以及防散射栅的使用。由于多次曝光变量的操作,优化后的腹部前后投影平均剂量面积乘积(DAP)降低了83%。对于人体暴露,目标EI和检测器暴露以及因此所需的mAs通常比优化后少20%。通过降低kVp并在恒定的入口皮肤剂量附近增加mAs,可以改善某些远端暴露的图像质量。建议购买具有高探测量子效率探测器的数字X射线设备,然后优化与这些探测器配合使用的曝光表对于进行儿科成像的场所非常重要。可能需要操纵多重曝光变量以达到最佳效果。

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