Design of a Second Generation Firewire Based Data Acquisition System for Small Animal PET Scanners.

T K Lewellen, R S Miyaoka, L R Macdonald, M Haselman, D Dewitt, William Hunter, S Hauck
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引用次数: 13

Abstract

The University of Washington developed a Firewire based data acquisition system for the MiCES small animal PET scanner. Development work has continued on new imaging scanners that require more data channels and need to be able to operate within a MRI imaging system. To support these scanners, we have designed a new version of our data acquisition system that leverages the capabilities of modern field programmable gate arrays (FPGA). The new design preserves the basic approach of the original system, but puts almost all functions into the FPGA, including the Firewire elements, the embedded processor, and pulse timing and pulse integration. The design has been extended to support implementation of the position estimation and DOl algorithms developed for the cMiCE detector module. The design is centered around an acquisition node board (ANB) that includes 65 ADC channels, Firewire 1394b support, the FPGA, a serial command bus and signal lines to support a rough coincidence window implementation to reject singles events from being sent on the Firewire bus. Adapter boards convert detector signals into differential paired signals to connect to the ANB.

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基于火线的第二代小动物PET扫描仪数据采集系统设计。
华盛顿大学开发了一个基于火线的数据采集系统,用于微型动物PET扫描仪。新的成像扫描仪的开发工作仍在继续,这些扫描仪需要更多的数据通道,并且需要能够在核磁共振成像系统内操作。为了支持这些扫描仪,我们设计了一个新版本的数据采集系统,利用现代现场可编程门阵列(FPGA)的功能。新设计保留了原系统的基本方法,但将几乎所有功能都放入FPGA中,包括火线元件、嵌入式处理器、脉冲定时和脉冲集成。该设计已扩展到支持为cMiCE检测器模块开发的位置估计和DOl算法的实现。该设计以采集节点板(ANB)为中心,包括65个ADC通道、火线1394b支持、FPGA、串行命令总线和信号线,以支持粗略的巧合窗口实现,以拒绝在火线总线上发送的单个事件。适配器板将探测器信号转换成差分配对信号连接到ANB。
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