Breitenstein D S, Shaw C C
Naval Surface Warfare Center, Dahlgren Division, VA, USA.
J Digit Imaging. 1998 Aug;11(3):137-50. doi: 10.1007/BF03168737.
Tissue composition measurement may provide a quantitatively and physically meaningful method to objectively determine the "mammographic density" linked to breast cancer risk. A single energy hybrid (SEH) techniques is described for measuring the tissue composition on a pixel-by-pixel basis with a single digital mammogram. Theoretical models were derived and used to compute signal-to-noise ratios (SNRs) in tissue composition measurement using the SEH method. The results were compared with those computed for measurements using the dual kVp and dual screen methods. SNRs were theoretically related to the pixel area, total unattenuated detector exposure and fluence spectra of the incident X-rays. SNRs were computed for measurement of the adipose tissue thickness for a 6 cm thick breast, consisting of 50% of adipose tissue and 50% of glandular tissue. Effects of kVp and prepatient filtration were studied by computing the SNRs for various kVps and filters and optimal kVps and filters are determined. The results showed that the SNRs obtained with the SEH method is an order of magnitude better than the dual kVp method, which, in turn, is an order of magnitude better than the dual screen method. When using the optimal kVp's and no prepatient filtration, the SNRs were computed to be 84.2, 13.2, and 2.0 for the SEH, dual kVp, and dual screen methods, respectively. Prepatient filtration can improve the SNR by as much as 35% for the dual kVp and dual screen techniques with reasonable tube loading factors (8-10).
组织成分测量可能提供一种定量且具有物理意义的方法,以客观地确定与乳腺癌风险相关的“乳腺钼靶密度”。本文描述了一种单能混合(SEH)技术,用于通过单次数字乳腺钼靶图像逐像素测量组织成分。推导了理论模型,并用于计算使用SEH方法进行组织成分测量时的信噪比(SNR)。将结果与使用双kVp和双屏方法测量所计算的结果进行比较。理论上,信噪比与像素面积、探测器总未衰减曝光量以及入射X射线的注量谱有关。计算了对一个6厘米厚的乳腺(由50%的脂肪组织和50%的腺体组织组成)进行脂肪组织厚度测量时的信噪比。通过计算不同kVp和滤波器的信噪比来研究kVp和患者前滤波的影响,并确定了最佳kVp和滤波器。结果表明,SEH方法获得的信噪比比双kVp方法好一个数量级,而双kVp方法又比双屏方法好一个数量级。当使用最佳kVp且无患者前滤波时,SEH、双kVp和双屏方法的信噪比分别计算为84.2、13.2和2.0。对于双kVp和双屏技术,在合理的管负载因子(8 - 10)下,患者前滤波可将信噪比提高多达35%。