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Dual-energy radiography of bone tissues using ZnSe-based scintielectronic detectors

机译:使用基于ZnSe的闪烁电子探测器对骨组织进行双能射线照相

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摘要

Detectors of the scintillator-photodiode type were obtained on the basis of CsI(Tl), CdWO_4 and ZnSe(Te) crystals, and their comparative study was carried out, aiming at their use in X-ray computer tomography (CT). Because of their low afterglow level (10ppm after 10 ms), CWO and ZnSe crystals are preferable for this application. A drawback of CWO is its lower (by 3 times) light output as compared with CsI(Tl). ZnSe has low transparence to intrinsic radiation; however, up to energies of 60-70 keV it is superior, as for the whole complex of its parameter, to materials traditionally used for CT detectors. The use of a dual-energy receiving-detecting circuit with a detector pair ZnSe/CsI or ZnSe/CdWO allows efficient distinction between muscular and bone tissues, which supports our earlier theoretical assumptions that this method could be successfully used for separate detection of materials differing in their effective atomic number Z_(eff) and local density (e.g., calcium contents in bone densitometry).
机译:基于CsI(Tl),CdWO_4和ZnSe(Te)晶体获得了闪烁体-光电二极管类型的探测器,并进行了比较研究,旨在将其用于X射线计算机断层扫描(CT)。由于它们的余辉度低(10 ms后为10ppm),因此CWO和ZnSe晶体更适合此应用。 CWO的缺点是与CsI(T1)相比其光输出较低(3倍)。 ZnSe对固有辐射的透明度低;然而,就其整个参数而言,高达60-70 keV的能量要优于传统上用于CT检测器的材料。将双能量接收检测电路与检测器对ZnSe / CsI或ZnSe / CdWO配对使用,可以有效区分肌肉和骨骼组织,这支持了我们较早的理论假设,即该方法可以成功地用于不同物质的分离检测其有效原子序数Z_(eff)和局部密度(例如,骨密度测定法中的钙含量)。

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