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Analog and digital signal processing method using multi‐time‐over‐threshold and FPGA FPGA for PET PET

机译:用于PET PET的多时间过阈值和FPGA FPGA的模拟和数字信号处理方法

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摘要

Purpose The goal of this study was to develop an analog and digital signal processing method using multi‐time‐over‐threshold ( MTOT ) and field programmable gate arrays ( FPGA s) to extract PET event information by using the internal clock of FPGA (~350 MH z), without ADC and TDC . Methods The PET detector modules were composed of a 4 × 4 matrix of 3 × 3 × 20 mm 3 LYSO and 4 × 4 Si PM array. Output charge signals of PET detector modules were amplified and fed into four comparators to generate trigger signals. The energy of the detected gamma ray was calculated by integrating the digitized pulse and the arrival time was determined from the time stamp of the lowest trigger signal by FPGA . The data packet containing energy, time, and position information was stored in list mode on the host computer. Results The performance of analog and digital signal processing circuits using MTOT method and FPGA was evaluated by measuring energy and time resolution of the proposed method and the values were 19% and 900 ps, respectively. Conclusion This study demonstrated that the proposed MTOT method consisting of only FPGA without ADC and TDC could provide a simple and cost‐effective analog and digital signal processing system for PET .
机译:目的本研究的目标是使用多时间过阈值(MTOT)和现场可编程门阵列(FPGA S)开发模拟和数字信号处理方法,以通过使用FPGA的内部时钟提取PET事件信息(〜 350 MH Z),无ADC和TDC。方法采用PET检测器模块由3×3×20mm 3 Lyso和4×4 Si PM阵列的4×4矩阵组成。 PET检测器模块的输出电荷信号被放大并进入四个比较器以产生触发信号。通过积分数字化脉冲来计算检测到的伽马射线的能量,并且通过FPGA从最低触发信号的时间戳确定到达时间。包含能量,时间和位置信息的数据分组在主机上存储在列表模式中。结果通过测量所提出的方法的能量和时间分辨率来评价模拟和数字信号处理电路的性能,并评估所提出的方法的能量和时间分辨率,分别为19%和900 ps。结论本研究表明,仅由没有ADC和TDC的FPGA组成的所提出的MTOT方法可以为PET提供简单且经济高效的模拟和数字信号处理系统。

著录项

  • 来源
    《Medical Physics》 |2018年第9期|共8页
  • 作者单位

    Department of Electronic EngineeringSogang University1 Shinsu‐Dong Mapo‐Gu Seoul 121‐742 South;

    Department of Electronic EngineeringSogang University1 Shinsu‐Dong Mapo‐Gu Seoul 121‐742 South;

    Department of Electronic EngineeringSogang University1 Shinsu‐Dong Mapo‐Gu Seoul 121‐742 South;

    Department of Electronic EngineeringSogang University1 Shinsu‐Dong Mapo‐Gu Seoul 121‐742 South;

    Department of Electronic EngineeringSogang University1 Shinsu‐Dong Mapo‐Gu Seoul 121‐742 South;

    Department of Electronic EngineeringSogang University1 Shinsu‐Dong Mapo‐Gu Seoul 121‐742 South;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 基础医学;
  • 关键词

    analog and digital signal processing method; data acquisition; PET; TOT;

    机译:模拟和数字信号处理方法;数据采集;宠物;TOT;

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