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A laboratory PET scanner with depth-of-interaction detectors for mouse studies and molecular imaging.

机译:带有交互深度检测器的实验室PET扫描仪,用于小鼠研究和分子成像。

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摘要

We have developed a compact laboratory PET scanner specific for mouse imaging. This simple, low-cost device is designed for measuring the pharmacokinetics of new tracers and drugs. The small cross-sectional profile of a mouse allows high sensitivity to be reached using only a small number of detectors close to the animal. However, a depth-of-interaction (DOI) encoding detector is required to correct the severe parallax error resulting from the 2 cm thick scintillation detectors and the small detector separation. Several DOI detector designs have been investigated. One approach was to place WLS fibers on the end of the arrays for both crystal identification and depth-decoding. Optimization work was done to maximize the light collection from the fiber ends and to minimize the optical cross-talk between fibers. Assembling LSO arrays with WLS fibers, a best DOI FWHM resolution of 5 mm FWHM was achieved. However due to the large light loss through fiber read-out, the flood histograms using fiber signals were not very good and the crystal identification was challenging. This idea was then modified by placing one end of the array directly to a MC-PMT with the other end read out by WLS sheet for DOI. Such a detector also had about 5 mm DOI FWHM and the flood histograms were greatly improved. The modified design was applied to build two detector modules for a prototype scanner. Preliminary experiments showed that the prototype scanner had 1.9-2.0 mm spatial resolution, 3.5 ns timing resolution and 6.6% system sensitivity at the center of the field-of-view (FOV).;A novel idea for depth-encoding has been investigated by coating the scintillator with a layer of phosphor to convert a fraction of the scintillation photons into phosphor photons. The coating changed the pulse shape in a depth-dependent manner. Up to 20 ns decay time changes were observed when coating half sides and the end of a LSO array with YGG phosphor. Using same technique to build a LSO-YGG array, about 8 mm DOI resolution has been achieved. This approach will be further investigated in the future to improve the depth-encoding properties.
机译:我们已经开发了一种专门用于鼠标成像的紧凑型实验室PET扫描仪。这种简单,低成本的设备旨在测量新型示踪剂和药物的药代动力学。鼠标的小截面轮廓允许仅使用靠近动物的少量检测器即可达到很高的灵敏度。但是,需要使用交互深度(DOI)编码检测器来纠正由2 cm厚的闪烁检测器和较小的检测器间距引起的严重视差误差。已经研究了几种DOI检测器设计。一种方法是将WLS光纤放置在阵列的末端,以进行晶体识别和深度解码。进行了优化工作,以最大程度地收集来自光纤末端的光并最小化光纤之间的光学串扰。用WLS光纤组装LSO阵列,可获得5 mm FWHM的最佳DOI FWHM分辨率。但是,由于通过光纤读取造成的大量光损耗,使用光纤信号的泛光直方图不是很好,并且晶体识别具有挑战性。然后通过将阵列的一端直接放置到MC-PMT上,而另一端由WLS纸页读取以进行DOI修改了此想法。这种探测器的DOI FWHM也约为5毫米,洪水直方图得到了极大改善。修改后的设计应用于为原型扫描仪构建两个检测器模块。初步实验表明,原型扫描仪在视场(FOV)的中心具有1.9-2.0 mm的空间分辨率,3.5 ns的定时分辨率和6.6%的系统灵敏度。用一层磷光体覆盖闪烁体,以将一部分闪烁光子转换成磷光体。涂层以与深度相关的方式改变脉冲形状。当用YGG荧光粉涂覆LSO阵列的一半和末端时,观察到长达20 ns的衰减时间变化。使用相同的技术构建LSO-YGG阵列,DOI分辨率已达到约8 mm。将来将进一步研究此方法,以改善深度编码属性。

著录项

  • 作者

    Du, Huini.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Engineering Biomedical.;Biophysics Medical.;Health Sciences Radiology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 183 p.
  • 总页数 183
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;预防医学、卫生学;生物物理学;
  • 关键词

  • 入库时间 2022-08-17 11:38:07

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