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Investigation of quad-energy high-rate photon counting for X-ray computed tomography using a cadmium telluride detector

机译:碲化镉检测器对X射线计算断层扫描的四态能量高速率光子的研究

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Abstract To obtain four kinds of tomograms at four different X-ray energy ranges simultaneously, we have constructed a quad-energy (QE) X-ray photon counter with a cadmium telluride (CdTe) detector and four sets of comparators and microcomputers (MCs). X-ray photons are detected using the CdTe detector, and the event pulses produced using amplifiers are sent to four comparators simultaneously to regulate four threshold energies of 20, 33, 50 and 65keV. Using this counter, the energy ranges are 20–33, 33–50, 50–65 and 65–100keV; the maximum energy corresponds to the tube voltage. We performed QE computed tomography (QE-CT) at a tube voltage of 100kV. Using a 0.5-mm-diam lead pinhole, four tomograms were obtained simultaneously at four energy ranges. K-edge CT using iodine and gadolinium media was carried out utilizing two energy ranges of 33–50 and 50–65keV, respectively. At a tube voltage of 100kV and a current of 60 μA, the count rate was 15.2 kilocounts per second (kcps), and the minimum count rates after penetrating objects in QE-CT were regulated to approximately 2 kcps by the tube current. Highlights ? X-ray counter based on quad-energy-range selection has been constructed. ? Counter is realized by four-sets of comparators and microcomputers. ? Photon energy determination was carried out online using microcomputers. ? CT was performed for four X-ray energy ranges with high count rates. ? Iodine and gadolinium K-edge CT was accomplished simultaneously.
机译:摘要在同时获得四种不同的X射线能量范围的四种断层照片,我们构建了一种与碲化镉(CDTE)检测器和四组比较器和微型计算机(MCS)的四核(QE)X射线光子计数器。 。使用CDTE检测器检测X射线光子,并且使用放大器产生的事件脉冲同时发送到四个比较器,以调节20,33,50和65kev的四个阈值能量。使用此计数器,能量范围为20-33,33-50,50-65和65-100Kev;最大能量对应于管电压。我们在100kV的管电压下执行QE计算机断层扫描(QE-CT)。使用0.5毫米直径的铅针孔,在四个能量范围内同时获得四个断层照片。使用碘和钆培养基的K-Edge CT分别使用两个33-50和50-65kev的两个能量范围进行。在100kV的管电压和60μA的电流中,计数率为每秒15.2千克(KCPS),并且通过管电流将QE-CT的物体渗透到约2kcps之后的最小计速率。强调 ?构建了基于四节能选择的X射线计数器。还计数器由四套比较器和微型计算机实现。还光子能量测定使用微型计算机在线进行。还CT对具有高计数率的四个X射线能量范围进行。还同时完成碘和钆K缘CT。

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