软处理器应用于医学电子准直控制的可行性研究

E. Aguayo, R. Martin, G. Sutter, E. Boemo
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引用次数: 0

摘要

康普顿照相机作为电子准直器,改善了核医学成像的特性,但为读出电路和数字控制系统增加了额外的计算成本。本文提出了一种基于可重构逻辑的软硬件协同设计方法,用于伽玛相机的电子准直结构设计。读出电路被实现为专用逻辑和包含它的嵌入式系统。两者都从通道数量和响应时间的可伸缩性方面进行了研究。通道的数量和获取这些通道的速度决定了该技术实现的总体性能。一个典型的电子准直应用场景,使用高纯度像素化CdZnTe晶体作为敏感材料,采用像素化阳极设计,是本性能研究的基础。本研究的结果是基于FPGA的嵌入式系统的精确设计参数,该系统执行与电子准直器原型控制相关的所有任务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Viability Study of Soft-Processor Usage for Electronic Collimation Control in Medical Applications
Compton cameras acting as electronic collimators, improve the characteristics of nuclear medicine imaging, with an additional computational cost for the readout circuitry and digital control system. This paper presents the use of reconfigurable logic based hardware-software co-design, to deal with such tasks as the ones related to the electronic collimation architecture used on gamma cameras. The readout circuitry has been implemented as dedicated logic and as an embedded system that contains it. Both are studied in terms of scalability in the number of channels and response time. This number of channels and the speed of acquisition of such channels define the overall performance achieved by the technique. A typical scenario of electronic collimation application, using a high purity pixelated CdZnTe crystal as the sensitive material with a pixellated anode design, is the base of this performance study. The results of this study are the exact design parameters of an FPGA based embedded system that performs all tasks associated with the control of an electronic collimator prototype.
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