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Analysis of factors that affect DQE in digital mammography

机译:影响数字乳腺摄影中DQE的因素分析

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The international standard IEC 62220-1 about DQE measurement of digital X-ray equipment was published in 2003,rnbut mammography systems aren’t applied to this IEC standard because the factor affect measurement is complicated.rnEspecially, the influence to the pre-sampling MTF by edge method when X-ray beam is oblique to detector. Therninfluence of nonuniformity of x-ray intensity by the heel effect on digital Wiener spectrum (WS) doesn’t become clear. Arn0.1mm-thick tungsten edge was imaged in the position where X-ray beam was perpendicular to detector plane and inrn6cm from chest wall, respectively. And the pre-sampling MTFs were obtained from these edge images. The calculationrnarea of the digital WS within irradiation area was moved in parallel direction to X-ray tube axis, and the digital WS wererncalculated. The pre-sampling MTFs and the digital WS are calculated by the method based on the IEC proposal. We usedrnMAMMOMAT3000(SIEMENS), MGU-100B(TOSHIBA), M-IV(LORAD) and Senographe DMR+(GE) as X-rayrngenerator. Images were obtained by FCR PROFECT CS (Fujifilm medical). In all equipments and both arrangementrndirections of the edge test device, pre-sampling MTFs are almost the same, even if the arrangement places of the edgerntest device varied. In all equipments, when the calculation area was moved about 10cm, the digital WS of the anode sidernwas higher 7.2-17.9% than those of the cathode side. It was found that the dose of anode side was lower about 20% thanrncathode side from the profile of an exposure image. We think that digital WS modified the nonuniformity of the dose byrnthe heel effect is obtained by multiplying the digital WS by the compensation coefficient obtained by the dose profile, inrnlow spatial frequency.
机译:关于数字X射线设备DQE测量的国际标准IEC 62220-1于2003年发布,但由于影响测量的因素复杂,因此乳腺X线照相系统并未应用到该IEC标准中。特别是对预采样MTF的影响当X射线束倾斜到检测器时,采用边缘法。脚跟效应对X射线强度的不均匀性对数字维纳光谱(WS)的影响尚不清楚。在X射线束垂直于探测器平面且距胸壁inrn6cm的位置成像Arn0.1mm厚的钨边缘。从这些边缘图像中获得了预采样的MTF。将数字WS的辐照区域内的计算面积沿与X射线管轴平行的方向移动,并对数字WS进行计算。通过基于IEC提案的方法计算预采样的MTF和数字WS。我们使用rnMAMMOMAT3000(SIEMENS),MGU-100B(TOSHIBA),M-IV(LORAD)和Senographe DMR +(GE)作为X射线发生器。通过FCR PROFECT CS(Fujifilm medical)获得图像。在边缘测试装置的所有设备和两个布置方向上,即使边缘测试装置的布置位置变化,预采样MTF几乎相同。在所有设备中,当计算区域移动约10cm时,阳极侧的数字WS都比阴极侧的数字WS高7.2-17.9%。从曝光图像的轮廓发现,阳极侧的剂量比阴极侧低约20%。我们认为,数字WS通过脚跟效应修正了剂量的不均匀性,方法是将数字WS乘以剂量分布图获得的补偿系数,从而降低空间频率。

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    School of Health Sciences, Nagoya University 1-1-20 Daiko-Minami, Higashi-ku, Nagoya, Aichi, Japan 461-8673;

    School of Health Sciences, Nagoya University 1-1-20 Daiko-Minami, Higashi-ku, Nagoya, Aichi, Japan 461-8673;

    School of Health Sciences, Nagoya University 1-1-20 Daiko-Minami, Higashi-ku, Nagoya, Aichi, Japan 461-8673;

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