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A multifunction digital receiver suitable for real-time frequency detection and compensation in fast magnetic resonance imaging

机译:一种适用于快速磁共振成像中实时频率检测和补偿的多功能数字接收机

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摘要

We describe the development and implementation of a multifunction digital receiver suitable for magnetic resonance imaging with capability of real-time frequency detection and compensation. The digital receiver consists primarily of firmware modules that combine the functionalities of signal acquisition, frequency detection and compensation, and data correction and image reconstruction. The receiver was developed based on a single multiple-input multiple-output radio-frequency electronic board equipped with a reconfigurable Field Programmable Gate Array (FPGA) device. A simple and practical algorithm was developed and implemented on the FPGA to accelerate the data processing for frequency determination. The simplified frequency detection and the higher system integration enable the receiver to reduce dramatically the time for frequency detection and compensation. With this receiver, we are able to detect the frequency of short-duration signals in the bandwidth of 10 MHz centered at 400 MHz within 75 ns after the signal acquisition. We describe the designs of the key FPGA modules and how these modules integrate into a multifunction receiver. We also present testing data that validate the simplified algorithm for frequency determination, demonstrate frequency detection and compensation, and demonstrate how real-time data correction is performed during image acquisition and reconstruction.
机译:我们描述了适用于磁共振成像并具有实时频率检测和补偿功能的多功能数字接收机的开发和实现。数字接收器主要由固件模块组成,这些固件模块结合了信号采集,频率检测和补偿以及数据校正和图像重建的功能。该接收器是基于装有可重构现场可编程门阵列(FPGA)器件的单个多输入多输出射频电子板开发的。开发了一种简单实用的算法,并在FPGA上实现了该算法,以加快用于频率确定的数据处理。简化的频率检测和更高的系统集成度使接收机能够大大减少频率检测和补偿的时间。使用该接收器,我们可以在信号采集后的75 ns内检测以400 MHz为中心的10 MHz带宽中的短时信号的频率。我们描述了关键FPGA模块的设计以及这些模块如何集成到多功能接收器中。我们还将提供测试数据,这些数据可验证简化的频率确定算法,演示频率检测和补偿,并演示如何在图像采集和重建过程中执行实时数据校正。

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