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Monte Carlo simulation studies on scintillation detectors and image reconstruction of brain-phantom tumors in TOFPET

机译:TOFPET中闪烁探测器的蒙特卡罗模拟研究和脑幻影肿瘤的图像重建

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摘要

This study presents Monte Carlo Simulation (MCS) results of detection efficiencies, spatial resolutions and resolving powers of a time-of-flight (TOF) PET detector systems. Cerium activated Lutetium Oxyorthosilicate (Lu2SiO5: Ce in short LSO), Barium Fluoride (BaF2) and BriLanCe 380 (Cerium doped Lanthanum tri-Bromide, in short LaBr3) scintillation crystals are studied in view of their good time and energy resolutions and shorter decay times. The results of MCS based on GEANT show that spatial resolution, detection efficiency and resolving power of LSO are better than those of BaF2 and LaBr3, although it possesses inferior time and energy resolutions. Instead of the conventional position reconstruction method, newly established image reconstruction (talked about in the previous work) method is applied to produce high-tech images. Validation is a momentous step to ensure that this imaging method fulfills all purposes of motivation discussed by reconstructing images of two tumors in a brain phantom.
机译:这项研究提出了飞行时间(TOF)PET探测器系统的探测效率,空间分辨率和分辨能力的蒙特卡罗模拟(MCS)结果。研究了铈活化氧合原硅酸((Lu2SiO5:简称为LSO的Ce),氟化钡(BaF2)和BriLanCe 380(掺杂铈的三溴化镧,简称LaBr3)的闪烁晶体,因为它们具有良好的时间和能量分辨率以及较短的衰减时间。基于GEANT的MCS结果表明,LSO的空间分辨率,检测效率和分辨能力优于BaF2和LaBr3,尽管它们具有较差的时间和能量分辨率。代替传统的位置重建方法,新建立的图像重建(在先前的工作中谈到)方法被应用来产生高科技图像。验证是确保该成像方法满足通过重构脑部模型中两个肿瘤的图像讨论的所有动机目的的重要步骤。

著录项

  • 作者

    Mondal, Nagendra Nath;

  • 作者单位
  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 en
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