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Detector collimator and real-time reconstructor for a new scanning-beam digital x-ray (SBDX) prototype

机译:用于新型扫描束数字X射线(SBDX)原型的探测器准直仪和实时重建器

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摘要

Scanning-beam digital x-ray (SBDX) is an inverse geometry fluoroscopy system for low dose cardiac imaging. The use of a narrow scanned x-ray beam in SBDX reduces detected x-ray scatter and improves dose efficiency, however the tight beam collimation also limits the maximum achievable x-ray fluence. To increase the fluence available for imaging, we have constructed a new SBDX prototype with a wider x-ray beam, larger-area detector, and new real-time image reconstructor. Imaging is performed with a scanning source that generates 40,328 narrow overlapping projections from 71 × 71 focal spot positions for every 1/15 s scan period. A high speed 2-mm thick CdTe photon counting detector was constructed with 320×160 elements and 10.6 cm × 5.3 cm area (full readout every 1.28 μs), providing an 86% increase in area over the previous SBDX prototype. A matching multihole collimator was fabricated from layers of tungsten, brass, and lead, and a multi-GPU reconstructor was assembled to reconstruct the stream of captured detector images into full field-of-view images in real time. Thirty-two tomosynthetic planes spaced by 5 mm plus a multiplane composite image are produced for each scan frame. Noise equivalent quanta on the new SBDX prototype measured 63%–71% higher than the previous prototype. X-ray scatter fraction was 3.9–7.8% when imaging 23.3–32.6 cm acrylic phantoms, versus 2.3–4.2% with the previous prototype. Coronary angiographic imaging at 15 frame/s was successfully performed on the new SBDX prototype, with live display of either a multiplane composite or single plane image.
机译:扫描束数字X射线(SBDX)是用于低剂量心脏成像的反几何荧光透视系统。在SBDX中使用狭窄的扫描X射线束可以减少检测到的X射线散射并提高剂量效率,但是紧密的光束准直也限制了可达到的最大X射线通量。为了增加可用于成像的通量,我们构建了一个新的SBDX原型,该原型具有更宽的X射线束,更大面积的检测器和新的实时图像重建器。使用扫描源进行成像,该扫描源每1/15 s扫描周期从71×71焦点位置生成40,328个狭窄的重叠投影。构造了一个2mm厚的高速CdTe光子计数检测器,该检测器具有320×160的元件和10.6 cm×5.3 cm的面积(每1.28μs进行完全读出),与以前的SBDX原型相比,面积增加了86%。匹配的多孔准直仪由钨,黄铜和铅组成,并装配了多GPU重建器,可将捕获的探测器图像流实时重建为全视野图像。为每个扫描帧生成32个间隔5 mm的断层合成平面以及一个多平面合成图像。新SBDX原型的噪声等效量化比以前的原型高63%–71%。成像23.3–32.6 cm丙烯酸模型时,X射线散射分数为3.9–7.8%,而之前的原型为2.3–4.2%。在新的SBDX原型上成功完成了15帧/秒的冠状动脉血管造影成像,可实时显示多平面合成图像或单平面图像。

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