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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Experimental study of a depth-encoding PET detector inserting horizontal-striped glass between crystal layers
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Experimental study of a depth-encoding PET detector inserting horizontal-striped glass between crystal layers

机译:深度编码PET检测器在晶体层之间插入水平条纹玻璃的实验研究

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A depth-encoding positron emission tomography (PET) detector inserting a horizontalstriped glass between pixilated scintillation crystal layers was developed and experimentally evaluated. The detector consists of 2-layers of 4×4 LYSO array arranged with a 3.37 mm pitch. Horizontal-striped glasses with 1×4 array with different thickness of 3, 4 and 5 mm were inserted between top- and bottom-crystal layers. Bottom surface of bottom-layer was optically coupled to a 4×4 GAPD array. Sixteen output signals from DOI-PET detector were multiplexed by modified resistive charge division (RCD) networks and multiplexed signalswere fed into custom-made chargesensitive preamplifiers. The four amplified signals were digitized and recorded by the custom-made DAQ system based on FPGA. The four digitized outputs were post-processed and converted to flood histograms for each interaction event. Experimental results revealed that all crystal pixels were clearly identified on the 2D flood histogram without overlapping. Patterns of the 2D flood histogram were constituted with arrangements of [bottom-top-bottom-top-. . . -top-bottom-top- bottom] crystal responses in X-direction. These could be achieved by employing horizontal-striped glass that controlled the extent of light dispersion towards the X-direction in crystal layers for generation of a different position mapping for each layer and the modified RCD network that controls degree of charge sharing in readout electronics for reduction of identification error. This study demonstrated the proposed DOI-PET detector can extract the 3D γ-ray interaction position without considerable performance degradation of PET detector from the 2D flood histogram.
机译:开发并经过实验评估在像素化闪烁晶体层之间插入水平玻璃的深度编码正电子发射断层扫描(PET)检测器。探测器由2层的4×4 Lyso阵列组成,布置3.37 mm间距。在顶部和底部晶体层之间插入具有不同厚度为3,4和5 mm的1×4阵列的卧式条纹眼镜。底层的底层光学耦合到4×4间隙阵列。来自DOI-PET检测器的十六个输出信号通过修改的电阻电荷分割(RCD)网络和多路复用的信号进行复用成定制的收费前置放大器。通过基于FPGA的定制DAQ系统数字化并记录四个放大信号。为每个交互事件进行后处理和转换为洪水直方图的四个数字化输出。实验结果表明,在2D洪水直方图上清楚地识别了所有晶体像素而不重叠。 2D泛洪直方图的图案由[底部底部 - 顶部 - 顶部 - 顶部 - 顶部 - 顶部 - 顶部。 。 。 -Top-底部顶部] X方向上的晶体响应。这些可以通过采用水平条纹玻璃来实现,该玻璃控制​​在晶体层中朝向X方向的光分散程度,用于产生每个层的不同位置映射和被修改的RCD网络,其控制读出电子设备中的电荷共享的程度减少识别误差。本研究证明了所提出的DOI-PET检测器可以从2D洪水直方图中提取3Dγ射线相互作用位置而没有PET检测器的相当性下降。

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