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FPGA-based front-end electronics for positron emission tomography

机译:基于FPGA的正电子发射断层扫描前端电子产品

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Modern Field Programmable Gate Arrays (FPGAs) are capable of performing complex discrete signal processing algorithms with clock rates above 100MHz. This combined with FPGA's low expense, ease of use, and selected dedicated hardware make them an ideal technology for a data acquisition system for positron emission tomography (PET) scanner. Our laboratory is producing a high-resolution, small-animal PET scanner that utilizes FPGAs as the core of the front-end electronics. For this next generation scanner, functions that are typically performed in dedicated circuits, or offline, are being migrated to the FPGA. This will not only simplify the electronics, but the features of modern FPGAs can be utilizes to add significant signal processing power to produce higher resolution images. In this paper two such processes, sub-clock rate pulse timing and event localization, will be discussed in detail. We show that timing performed in the FPGA can achieve a resolution that is suitable for small-animal scanners, and will outperform the analog version given a low enough sampling period for the ADC. We will also show that the position of events in the scanner can be determined in real time using a statistical positioning based algorithm.
机译:现代领域可编程门阵列(FPGA)能够执行以上100MHz以上的时钟速率进行复杂的离散信号处理算法。这与FPGA的低费用,易用性和选择的专用硬件相结合,使它们成为正电子发射断层扫描(PET)扫描仪数据采集系统的理想技术。我们的实验室正在生产高分辨率,小动物PET扫描仪,利用FPGA作为前端电子设备的核心。对于该下一代扫描仪,通常在专用电路或离线中执行的功能正在迁移到FPGA。这不仅将简化电子产品,而且现代FPGA的功能可用于增强显着的信号处理能力以产生更高的分辨率图像。在本文中,将详细讨论两个这样的过程,子时钟速率脉冲定时和事件定位。我们表明,在FPGA中执行的定时可以实现适合小动物扫描仪的分辨率,并且将为ADC的足够低的采样周期提供模拟版本。我们还将显示,可以使用基于统计定位的算法实时确定扫描仪中的事件的位置。

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