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首页> 外文期刊>Physics in medicine and biology. >Development of a dual modality imaging system: a combined gamma camera and optical imager.
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Development of a dual modality imaging system: a combined gamma camera and optical imager.

机译:开发双模态成像系统:组合式伽马相机和光学成像仪。

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摘要

Several groups have reported the development of dual modality Gamma camera/optical imagers, which are useful tools for investigating biological processes in experimental animals. While previously reported dual modality imaging instrumentation usually employed a separated gamma camera and optical imager, we designed a detector using a position sensitive photomultiplier tube (PSPMT) that is capable of imaging both gamma rays and optical photons for combined gamma camera and optical imager. The proposed system consists of a parallel-hole collimator, an array-type crystal and a PSPMT. The top surface of the collimator and array crystals is left open to allow optical photons to reach the PSPMT. Pulse height spectra and planar images were obtained using a Tc-99m source and a green LED to estimate gamma and optical imaging performances. When both gamma rays and optical photon signals were detected, the signal interferences caused by each other signal were evaluated. A mouse phantom and an ICR mouse containing a gamma ray and optical photon source were imaged to assess the imaging capabilities of the system. The sensitivity, energy resolution and spatial resolution of the gamma image acquired using Tc-99m were 1.1 cps/kBq, 26% and 2.1 mm, respectively. The spatial resolution of the optical image acquired with an LED was 3.5 mm. Signal-to-signal interference due to the optical photon signal in the gamma pulse height spectrum was negligible. However, the pulse height spectrum of the optical photon signal was found to be affected by the gamma signal, and was obtained between signals generated by gamma rays with a correction using a veto gate. Gamma ray and optical photon images of the mouse phantom and ICR mouse were successfully obtained using the single detector. The experimental results indicated that both optical photon and gamma ray imaging are feasible using a detector based on the proposed PSPMT.
机译:几个研究小组报告了双模态伽马相机/光学成像仪的开发,这是研究实验动物生物学过程的有用工具。虽然先前报道的双模态成像仪器通常使用分离的伽马相机和光学成像仪,但我们设计了一种使用位置敏感光电倍增管(PSPMT)的探测器,该探测器能够对伽马相机和光学成像仪组合的伽玛射线和光学光子成像。拟议的系统由平行孔准直仪,阵列型晶体和PSPMT组成。准直仪和阵列晶体的顶表面保持敞开状态,以允许光子到达PSPMT。使用Tc-99m光源和绿色LED可获得脉冲高度谱和平面图像,以估计伽玛和光学成像性能。当同时检测到伽马射线和光子信号时,评估了彼此引起的信号干扰。对包含伽马射线和光学光子源的小鼠体模和ICR小鼠进行了成像,以评估系统的成像能力。使用Tc-99m采集的伽马图像的灵敏度,能量分辨率和空间分辨率分别为1.1 cps / kBq,26%和2.1 mm。用LED获取的光学图像的空间分辨率为3.5mm。在伽马脉冲高度谱中由于光子信号引起的信号间干扰可以忽略不计。然而,发现光子信号的脉冲高度谱受伽马信号影响,并且是在伽马射线产生的信号之间通过使用否决门进行校正而获得的。使用单个检测器成功获得了小鼠体模和ICR小鼠的γ射线和光学光子图像。实验结果表明,使用基于所提出的PSPMT的探测器,光学光子和伽马射线成像都是可行的。

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