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Dual-energy technique for digital flat-panel detectors without x-ray tube voltage switching

机译:无X射线管电压切换的数字平板探测器的双能技术

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Dual-energy imaging increases the possibility of pulmonary nodule detection by reducing the bone structure noise. The major problem of the dual-energy acquisition process with digital flat-panel detectors is the interval of time between low-energy (LE) exposure and high-energy (HE) exposure. Due to misregistration between LE and HE images, motion artifacts pollute the subtracted image. This paper presents a new acquisition approach for dual-energy imaging developed in order to reduce this inter-exposure time. The idea is to keep the tube voltage constant and to just switch a filter in front of the imaged object and thus to modulate the outgoing x-ray spectrum. The first part of this study presents how to optimize system parameters for the new acquisition protocol: source voltage, dynamic filtration before the patient, exposure time for LE and HE acquisition. The tube load is kept constant to focus the optimization study on the dose and the exposure time. A noise quality factor (NQF) and a spectral quality factor (SQF) are used as criteria for optimization. The new approach system is then compared to the state-of-the-art system with voltage switching between low and high energy. A filtering algorithm of dual energy acquisitions enabling a significant noise reduction is presented. Performance between its combination with the new acquisition protocol and the reference one are compared. For a limited noise quality factor, three times faster acquisition time is obtained using the new system. Noise reduction techniques improve the image SNR by 61% in the new system and only 32% in the reference system, without taking into account the impact of better registration on the dual-energy image quality.
机译:双能成像通过降低骨结构噪声来增加肺结核检测的可能性。具有数字平板探测器的双能采集过程的主要问题是低能量(LE)曝光和高能量(HE)曝光之间的时间间隔。由于LE和HE图像之间的误解,运动伪影污染了减去图像。本文提出了一种新的采集方法,用于减少这种暴露时间的双能成像。该想法是保持管电压恒定并仅在成像对象的前面切换滤波器,从而调制输出X射线谱。本研究的第一部分介绍了如何优化新采集协议的系统参数:源电压,患者前动态过滤,LE和HE获取的曝光时间。管载荷保持恒定,以对焦于剂量和曝光时间的优化研究。噪声质量因数(NQF)和光谱质量因子(SQF)用作优化标准。然后将新方法系统与最先进的系统进行比较,具有低能量之间的电压切换。提出了一种能够实现显着降噪的双能量采集的过滤算法。比较其与新采集协议和引用组合之间的性能。对于有限的噪声质量因数,使用新系统获得的采集时间快三倍。降噪技术在新系统中将图像SNR提高61%,并且在参考系统中仅32%,而不考虑更好的注册对双能图像质量的影响。

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