AI 中文总结
该研究针对医学成像系统对前端电子设备的需求,利用现场可编程门阵列处理大量数据并保持可预测定时和低延迟操作的特性,将医学成像概念简化为基于FPGA的小型前端演示。
AI 中文摘要
医学成像系统需要可靠的前端电子设备来采集传感器数据、处理图像信息、识别错误并将结果传达给系统的其他部分。在X射线成像、CT、PET、超声等诊断成像系统中,电子设备必须处理大量数据,同时保持可预测的定时和低延迟操作。由于这些要求,现场可编程门阵列通常用于医学成像和信号处理应用。在本项目中,医学成像概念被简化为一个基于现场可编程门阵列的小型前端演示。
英文摘要
Medical imaging systems require reliable front-end electronics that can acquire sensor data, process image information, identify errors, and communicate results to other parts of the system. In applications such as X-ray imaging, CT, PET, ultrasound, and other diagnostic imaging systems, the electronics must often handle large amounts of data while maintaining predictable timing and low-latency operation. Because of these requirements, FPGAs (Field Programmable Gate Arrays) are commonly useful for medical imaging and signal-processing applications. In this project, the medical imaging concept is simplified into a small FPGA-based frontend demonstration.
Comments20 pages, 9 Figures