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New measurement methods of focal spot size and shape of x-ray tubes in digital radiological applications in comparison to current standards

机译:与当前标准相比,数字放射学应用中X射线管焦点尺寸和形状的新测量方法

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Unsharpness in the image may reduce the visibility of details. Magnification is often required to achieve a spatial resolution similar to film technique, when using digital systems. A part of the unsharpness results from the focal spot size. To determine the effective focal spot size, thousands of images with different tubes, energies, magnifications and IQIs from different EN and ASTM standards were taken to evaluate the influence of the unsharpness in the digital image due to the focal spot. This leads to reference values for the effective focal spot size of the different tubes. These reference values were compared with the values of the pin hole camera images according to EN 12543-2 and they deviated significantly. Several modifications of the evaluation method were proposed and a method with Integrated Line Profiles which produces results like an edge profile method was developed and tested providing similar results as the reference values. A second more simple method for end-users was introduced based on the evaluation of Penetrameter hole edges. A proposed update of the standards for focal spot measurements in ASTM and ISO is introduced. New classes will help the users to identify more simple and reliable the X-ray tube for their application.
机译:图像不清晰可能会降低细节的可见性。使用数字系统时,通常需要放大以达到类似于胶片技术的空间分辨率。不清晰的部分原因是焦斑大小。为了确定有效焦斑大小,拍摄了数千张来自不同EN和ASTM标准的具有不同显像管,能量,放大倍率和IQI的图像,以评估由于焦斑而导致的数字图像不清晰的影响。这导致不同管的有效焦点尺寸的参考值。将这些参考值与根据EN 12543-2的针孔照相机图像的值进行比较,并且它们明显偏离。提出了对评估方法的一些修改,并开发了一种集成线轮廓方法,该方法可以产生类似于边缘轮廓方法的结果,并进行了测试,并提供了与参考值相似的结果。根据对测光仪孔边缘的评估,为最终用户介绍了第二种更简单的方法。介绍了ASTM和ISO中焦点测量标准的建议更新。新的类别将帮助用户识别更简单和可靠的X射线管,以适合其应用。

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