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gr-MRI: A software package for magnetic resonance imaging using software defined radios

机译:gr-MRI:使用软件定义的无线电进行磁共振成像的软件包

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摘要

The goal of this work is to develop software that enables the rapid implementation of custom MRI spectrometers using commercially-available software defined radios (SDRs). The developed gr-MRI software package comprises a set of Python scripts, flowgraphs, and signal generation and recording blocks for GNU Radio, an open-source SDR software package that is widely used in communications research. gr-MRI implements basic event sequencing functionality, and tools for system calibrations, multi-radio synchronization, and MR signal processing and image reconstruction. It includes four pulse sequences: a single-pulse sequence to record free induction signals, a gradient-recalled echo imaging sequence, a spin echo imaging sequence, and an inversion recovery spin echo imaging sequence. The sequences were used to perform phantom imaging scans with a 0.5 Tesla tabletop MRI scanner and two commercially-available SDRs. One SDR was used for RF excitation and reception, and the other for gradient pulse generation. The total SDR hardware cost was approximately $2000. The frequency of radio desynchronization events and the frequency with which the software recovered from those events was also measured, and the SDR’s ability to generate frequency-swept RF waveforms was validated and compared to the scanner’s commercial spectrometer. The spin echo images geometrically matched those acquired using the commercial spectrometer, with no unexpected distortions. Desynchronization events were more likely to occur at the very beginning of an imaging scan, but were nearly eliminated if the user invoked the sequence for a short period before beginning data recording. The SDR produced a 500 kHz bandwidth frequency-swept pulse with high fidelity, while the commercial spectrometer produced a waveform with large frequency spike errors. In conclusion, the developed gr-MRI software can be used to develop high-fidelity, low-cost custom MRI spectrometers using commercially-available SDRs.
机译:这项工作的目的是开发一种软​​件,该软件可以使用市售的软件定义无线电(SDR)快速实现定制MRI光谱仪。已开发的gr-MRI软件包包括用于GNU Radio的一组Python脚本,流程图以及信号生成和记录块,GNU Radio是一种广泛用于通信研究的开源SDR软件包。 gr-MRI实现了基本的事件排序功能,以及用于系统校准,多无线电同步以及MR信号处理和图像重建的工具。它包括四个脉冲序列:记录自由感应信号的单脉冲序列,称为梯度的回波成像序列,自旋回波成像序列和反向恢复自旋回波成像序列。该序列用于通过0.5特斯拉台式MRI扫描仪和两个市售SDR执行幻像成像扫描。一个SDR用于射频激励和接收,另一个用于梯度脉冲生成。 SDR硬件总成本约为2000美元。还测量了无线电不同步事件的频率以及从这些事件中恢复软件的频率,并验证了SDR生成扫频RF波形的能力,并将其与扫描仪的商用光谱仪进行了比较。自旋回波图像在几何上与使用商用光谱仪获得的图像匹配,没有意外的失真。非同步事件很可能在成像扫描的一开始就发生,但是如果用户在开始数据记录之前短时间调用该序列,则几乎可以消除这种情况。 SDR产生高保真度的500 kHz带宽扫频脉冲,而商用光谱仪产生的频率尖峰误差很大。总之,开发的gr-MRI软件可用于使用市售SDR开发高保真,低成本的定制MRI光谱仪。

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