首页> 外文期刊>IEEE Transactions on Nuclear Science >Annihilation /spl gamma/-ray background characterization and rejection for a small beta camera used for tumor localization during surgery
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Annihilation /spl gamma/-ray background characterization and rejection for a small beta camera used for tumor localization during surgery

机译:a灭/ spl伽玛射线/射线背景特征和用于外科手术中肿瘤定位的小型β照相机的排斥

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摘要

The authors have developed a miniature (1.2 cm/sup 2/) beta-ray camera prototype to assist a surgeon in locating the margins of a resected tumor. With this technique, one directly detects betas emitted from exposed radio-labeled tissue. When imaging positron emitting radiopharmaceuticals, annihilation gamma ray interactions in the detector can mimic those of the betas. The extent of the background contamination depends on the detector, geometry and the tumor specificity of the radiopharmaceutical. The authors have characterized the effects that annihilation gamma rays have on positron imaging with their small camera. They studied beta and gamma ray detection rates and imaging using small positron or electron sources directly exposed to the detector to simulate hot tumor remnants, and a cylinder filled with /sup 18/F to simulate annihilation background from the brain. For various ratios of phantom head/tumor activity, a background gamma rate of 2.0 cts/sec//spl mu/Ci was measured in the CaF/sub 2/(Eu) detector. The authors present two gamma-ray background rejection schemes that require a /spl beta/-/spl gamma/ coincidence. The first configuration uses a high efficiency scintillator coincidence "shield", the second, a "phoswich". Results show that these coincidence methods work with /spl sim/99% gamma ray rejection efficiency.
机译:作者开发了一种微型(1.2 cm / sup 2 /)β射线照相机原型,以协助外科医生定位切除的肿瘤的边缘。通过这种技术,人们可以直接检测从暴露的放射性标记组织发出的β。对发射正电子的放射性药物进行成像时,检测器中的an灭伽马射线相互作用可以模仿β的相互作用。背景污染的程度取决于放射性药物的检测器,几何形状和肿瘤特异性。这组作者已经描述了an灭伽玛射线对小型照相机对正电子成像的影响。他们研究了β和γ射线的探测率以及使用直接暴露于探测器的小型正电子或电子源来成像,以模拟热肿瘤残留物,以及装有/ sup 18 / F的圆柱体以模拟来自大脑的an灭背景。对于幻影头部/肿瘤活动的各种比率,在CaF / sub 2 /(Eu)检测器中测得的背景伽马速率为2.0 cts / sec // spl mu / Ci。作者介绍了两种需要/ spl beta /-/ spl gamma /巧合的伽马射线背景抑制方案。第一种配置使用高效闪烁体重合“屏蔽”,第二种配置使用“磷光体”。结果表明,这些重合方法具有/ spl sim / 99%的伽马射线抑制效率。

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