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Performance evaluation of continuous blood sampling system for PET study: comparison of three detector-systems

机译:宠物研究连续血液采样系统的性能评价:三种探测器系统的比较

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OBJECTIVES: To measure cerebral blood flow with 15O'PET, it is necessary to measure the time course of arterial blood radioactivity. We examined the performance of three different types of continuous blood sampling system. METHODS: Three kinds of continuous blood sampling system were used: a plastic scintillator-based beta detector (conventional beta detector (BETA)), a bismuth germanate (BGO)-based coincidence gamma detector (Pico-count flow-through detector (COINC)) and a Phoswich detector (PD) composed by a combination of plastic scintillator and BGO scintillator. Performance of these systems was evaluated for absolute sensitivity, count rate characteristic, sensitivity to background gamma photons, and reproducibility for nylon tube geometry. RESULTS: The absolute sensitivity of the PD was 0.21 cps/Bq for 68Ga positrons at the center of the detector. This was approximately three times higher than BETA, two times higher than COINC. The value measured with BETA was stable, even when background radioactivity was increased. The count rate characteristic of the PD and COINC was linear up to 8 kcps. The reproducibility of sensitivity for nylon tube geometry of COINC was the smallest (C.V. = 1.00%) among the three. PD was the weights the least (3.5 kg) among the three, which is convenient for clinical use. CONCLUSIONS: Each detector has unique characteristics derived from its own structure. Although the performance of all three detectors meets clinical requirement, PD had the highest physical performance.
机译:目标:测量带15o'坐的脑血流,有必要测量动脉血液放射性的时间过程。我们检查了三种不同类型的连续血液采样系统的性能。方法:使用三种连续血液采样系统:基于塑料闪烁体的β探测器(常规β检测器(β)),锗醛铋(BGO)基于重合伽马检测器(微微计数流通检测器(COINC) )和由塑料闪烁体和BGO闪烁体的组合组成的伪探测器(PD)。这些系统的性能被评估了绝对灵敏度,计数率特征,对背景伽马光子的敏感性,以及尼龙管几何形状的再现性。结果:PD的绝对灵敏度为0.21 CPS / BQ,在探测器的中心处为68gA正弦。这比β大约三倍,比coinc高两倍。即使背景放射性增加,用β测定的值稳定。 Pd和CoInc的计数率特征是直到8kCP的线性。尼龙管几何形状的敏感性的再现性是三个中最小(C.V. = 1.00%)。 PD是三种体重最少(3.5千克)的重量,这对于临床使用方便。结论:每个探测器具有源自自身结构的独特特征。虽然所有三种探测器的性能符合临床要求,但PD具有最高的物理性能。

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