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Detective Quantum Efficiency: A Standard Test to Ensure Optimal Detector Performance and Low Patient Exposures

机译:探测器的量子效率:确保最佳探测器性能和低患者暴露水平的标准测试

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The detective quantum efficiency (DQE), expressed as a function of spatial frequency, describes the ability of an x-ray detector to produce high signal-to-noise ratio (SNR) images. While regulatory and scientific communities have used the DQE as a primary metric for optimizing detector design, the DQE is rarely used by end users to ensure high system performance is maintained. Of concern is that image quality varies across different systems for the same exposures with no current measures available to describe system performance. Therefore, here we conducted an initial DQE measurement survey of clinical x-ray systems using a DQE-testing instrument to identify their range of performance. Following laboratory validation, experiments revealed that the DQE of five different systems under the same exposure level (8.0 μGy) ranged from 0.36 to 0.75 at low spatial frequencies, and 0.02 to 0.4 at high spatial frequencies (3.5 cycles/mm). Furthermore, the DQE dropped substantially with decreasing detector exposure by a factor of up to 1.5× in the lowest spatial frequency, and a factor of 10× at 3.5 cycles/mm due to the effect of detector readout noise. It is concluded that DQE specifications in purchasing decisions, combined with periodic DQE testing, are important factors to ensure patients receive the health benefits of high-quality images for low x-ray exposures.
机译:表示为空间频率的函数的探测量子效率(DQE)描述了X射线探测器产生高信噪比(SNR)图像的能力。尽管监管机构和科学界已将DQE用作优化检测器设计的主要指标,但最终用户很少使用DQE来确保维持较高的系统性能。值得关注的是,对于相同的曝光量,不同系统的图像质量会有所不同,而目前尚无可用于描述系统性能的衡量指标。因此,在这里,我们使用DQE测试仪对临床X射线系统进行了初始DQE测量调查,以确定其性能范围。经过实验室验证,实验表明,在相同的暴露水平(8.0μGy)下,五个不同系统的DQE在低空间频率下的范围为0.36至0.75,而在高空间频率(3.5个周期/毫米)下的范围为0.02至0.4。此外,由于检测器读数噪声的影响,DQE随检测器暴露量的降低而下降,在最低空间频率下降低了1.5倍,而在3.5个周期/ mm处降低了10倍。结论是,购买决策中的DQE规范与定期的DQE测试相结合,是确保患者在低X射线照射下获得高质量图像的健康益处的重要因素。

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