Moore C S, Beavis A W, Saunderson J R
Radiation Physics Department, Hull & East Yorkshire Hospitals, Princess Royal Hospital, Saltshouse Road, Kingston Upon Hull, UK.
Br J Radiol. 2008 Oct;81(970):771-7. doi: 10.1259/bjr/21963665. Epub 2008 Jul 28.
The purpose of this study was to determine the optimum tube voltage and amount of added copper (Cu) filtration for processed chest radiographs obtained with an Agfa 75.0 Computed Radiography (CR) system. The contrast-to-noise ratio (CNR) was measured in the lung, heart/spine and diaphragm compartments of a validated chest phantom using various tube voltages and amounts of Cu filtration. The CNR was derived as a function of air kerma at the CR plate and with the effective dose. As rib contrast can interfere with detection of nodules in chest radiography, a tissue-to-rib ratio (TRR) was derived to investigate which tube voltages suppress the contrast of rib. Although processing algorithms affect the signal and noise in a way that is hard to predict, we found that, for a given set of processing parameters, the CNR was related to the plate air kerma and effective dose in a logarithmic manner (all R(2) >or=0.97). For imaging of the lung region, a low voltage (60 kVp) produced the highest CNR, whereas a high voltage (125 kVp) produced the highest TRR. In the heart/spine region, 80-125 kVp produced the highest CNR, while in the diaphragm region 60-90 kVp produced the highest CNR. For chest radiography with this CR system, the optimal tube voltage depends upon the region of interest. Of the filters tested, a 0.1 mm Cu thickness was found to provide a statistically significant increase in the CNR in the diaphragm region with tube potentials of 60 kVp and 80 kVp, without affecting the CNR in the other anatomical compartments.
本研究的目的是确定使用爱克发75.0计算机X线摄影(CR)系统获得的胸部处理X线片的最佳管电压和附加铜(Cu)滤过量。使用各种管电压和Cu滤过量,在经过验证的胸部体模的肺、心脏/脊柱和膈肌区域测量对比噪声比(CNR)。CNR是作为CR板处空气比释动能以及有效剂量的函数得出的。由于肋骨对比度会干扰胸部X线摄影中结节的检测,因此得出组织与肋骨比(TRR)以研究哪些管电压可抑制肋骨的对比度。尽管处理算法对信号和噪声的影响难以预测,但我们发现,对于给定的一组处理参数,CNR与板空气比释动能和有效剂量呈对数关系(所有R²≥0.97)。对于肺区域成像,低电压(60 kVp)产生最高的CNR,而高电压(125 kVp)产生最高的TRR。在心脏/脊柱区域,80 - 125 kVp产生最高的CNR,而在膈肌区域,60 - 90 kVp产生最高的CNR。对于使用此CR系统的胸部X线摄影,最佳管电压取决于感兴趣区域。在所测试的滤过器中,发现0.1 mm Cu厚度在管电压为60 kVp和80 kVp时可使膈肌区域的CNR有统计学显著增加,而不影响其他解剖区域的CNR。