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首页> 外文期刊>Journal of medical imaging and radiation sciences >Experimental Study of an Easily Controlled Ultra-High-Resolution Pixel-Matched Parallel-Hole Collimator with a Small Cadmium Zinc Telluride Pixelated Gamma Camera System
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Experimental Study of an Easily Controlled Ultra-High-Resolution Pixel-Matched Parallel-Hole Collimator with a Small Cadmium Zinc Telluride Pixelated Gamma Camera System

机译:基于小型碲化镉锌像素化伽马相机系统的易控超高分辨率像素匹配平行空穴准直器的实验研究

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摘要

The aim of this study was to develop an easily controlled, ultra-high-resolution, tungsten parallel-hole collimator based on a small pixelated gamma camera system. A small cadmium zinc telluride (CZT) pixelated semiconductor detector (eValuator-2500 detector eV product, Saxonburg, PA) was evaluated. This detector is composed of an array of 51.2 x 0.8 x 3-mm individual CZT crystal elements. The ultra-high-resolution, pixel-matched, parallel-hole collimators consisted of six layers, with the same between the hole and pixel size. The basic characteristics of the imaging system, such as sensitivity and spatial resolution, was measured using a Co point source. The measured averages of sensitivity and spatial resolution varied depending on the septal heights of the ultra-high-resolution parallel-hole collimator and source-to-collimator distances. When the 30-mm septal height was at 1-cm source-to-collimator distance, the spatial resolution was approximately 0.85 mm. Using 5-mm septal height, over 0.3 cps/kBq sensitivity was achieved. One advantage of our system is the use of stacked collimators that can select the best combination of system sensitivity and spatial resolution. Our results demonstrated that the developed CZT-pixelated gamma camera system using an ultra-high-resolution parallel-hole collimator of various collimator geometric designs has potential as an effective instrument.
机译:本研究的目的是开发一种基于小型像素化伽马相机系统的易于控制的超高分辨率钨平行孔准直器。评估了一种小型碲化镉锌 (CZT) 像素化半导体探测器(eValuator-2500 探测器 [eV 产品,宾夕法尼亚州萨克森堡])。该探测器由 51.2 x 0.8 x 3 mm 单个 CZT 晶体元件阵列组成。超高分辨率、像素匹配的平行孔准直器由六层组成,孔和像素大小相同。成像系统的基本特性,如灵敏度和空间分辨率,是使用Co点源测量的。灵敏度和空间分辨率的测量平均值因超高分辨率平行孔准直器的隔层高度和源到准直器距离而异。当 30 mm 的隔高在 1 cm 的源到准直器距离处时,空间分辨率约为 0.85 mm。使用 5 mm 的隔高,灵敏度超过 0.3 cps/kBq。我们系统的一个优点是使用堆叠式准直器,可以选择系统灵敏度和空间分辨率的最佳组合。结果表明,使用各种准直器几何设计的超高分辨率平行孔准直器开发的CZT像素化伽马相机系统具有作为有效仪器的潜力。

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