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Effects of radiographic techniques on the low-contrast detail detectability performance of digital radiography systems

机译:射线照相技术对数字射线照相系统低对比度细节可检测性性能的影响

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Purpose: To evaluate the effects of the radiation exposure factors kilovolt peak and tube current time (milliampere seconds) on the low-contrast detail detectability performance of 3 types of planar digital radiography systems. Detectability performance of an imaging system refers to its ability to detect and present the low-contrast details of organs in the acquired image. The authors also compare detectability performance between computed radiography, indirect digital radiography, and direct digital radiography by evaluating low-contrast details of the obtained images. Methods: A low-contrast detail phantom was inserted within 10-cm thicknesses of Perspex plastic sheets. The images were obtained with various kilovolt peak and milliampere second settings for each of the 3 digital radiography systems. Artinis CDRAD Analyser software was used to score the images and calculate the inverse image quality figure (IQFinv). Results: The higher milliampere second levels in each kilovolt peak selection resulted in higher IQFinv in computed radiography and indirect and direct digital radiography. IQFinv values significantly increased in indirect digital radiography with increasing kilovolt peak in only 1 and 2 mAs. There were insignificant differences in IQFinv values when altering kilovolt peak in each milliampere second level in direct digital radiography. The indirect digital radiography system generally demonstrated better detectability performance than computed radiography and direct digital radiography. However, direct digital radiography demonstrated better detectability performance than indirect digital radiography at lower kilovolt peak and milliampere second settings, as did computed radiography at lower kilovolt peak settings. Discussion: Higher milliampere second settings increase photon count, which results in a higher signal-to-noise ratio and thus increased detectability. Lower milliampere second settings increase noise level on images, which increases the risk of diagnostic detail loss. Changing the kilovolt peak at the different milliampere second settings essentially did not affect the IQFinv of the different digital radiography systems. Conclusion: Increasing milliampere seconds in all digital imaging systems generally improves detectability performance. However, altering the kilovolt peak setting does not significantly change the IQFinv and detectability of objects in a digital radiograph. Imaging system selection should be based on typical radiographic examinations. Indirect digital radiography systems are better for studies that require higher kilovolt peak, such as large organs, and direct digital radiography is better for studies that require low kilovolt peak, such as small organs and mammography, which is used to examine fine tissue details.
机译:目的:评价辐射暴露因子千伏峰值和管电流时间(毫安秒)对三种类型的平面数字射线照相系统的低对比度细节可检测性性能的影响。成像系统的可检测性性能是指其检测并呈现所采集图像中器官的低对比度细节的能力。作者还通过评估获得图像的低对比度细节,比较了计算机射线照相,间接数字射线照相和直接数字射线照相之间的可检测性性能。方法:在Perspex塑料片材的10厘米厚度内插入一个低对比度的细节体模。对于3个数字射线照相系统中的每一个,均以不同的千伏峰值和毫安秒设置获得图像。使用Artinis CDRAD分析仪软件对图像进行评分并计算图像质量反比(IQFinv)。结果:在每个千伏峰值选择中,较高的毫安秒级会导致计算机射线照相以及间接和直接数字射线照相中的IQFinv较高。 IQFinv值在间接数字X线摄影中显着增加,仅在1和2 mAs中出现千伏峰值。在直接数字射线照相术中,改变每毫安秒级的千伏峰值时,IQFinv值没有显着差异。间接数字射线照相系统通常表现出比计算机射线照相和直接数字射线照相更好的可检测性。但是,在较低千伏峰值和毫安秒设置下,直接数字射线照相比间接数字放射显示更好的可检测性,在较低千伏峰设置下的计算机射线照相也是如此。讨论:更高的毫安秒设置会增加光子计数,这会导致更高的信噪比,从而提高可检测性。较低的毫安秒设置会增加图像上的噪声水平,从而增加诊断细节丢失的风险。在不同的毫安秒设置下更改千伏峰值基本上不会影响不同数字放射成像系统的IQFinv。结论:在所有数字成像系统中,增加的毫安秒通常会提高可检测性。但是,更改千伏峰值设置不会显着改变数字X射线照片中的IQFinv和物体的可检测性。成像系统的选择应基于典型的射线照相检查。间接数字射线照相系统对于要求较高千伏峰的研究(例如大型器官)比较好,而直接数字射线照相系统对于要求低千伏峰的研究(例如小器官和乳房X线照相术)(用于检查细小组织细节)更好。

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    《Radiologic Technology》 |2014年第6期|共9页
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  • 正文语种 eng
  • 中图分类 放射医学;
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  • 入库时间 2022-08-18 13:21:08

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