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Development of Filtering Methods for PET Signals Contaminated by RF Pulses for Combined PET-MRI

机译:结合PET-MRI对RF脉冲污染的PET信号的滤波方法的开发

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摘要

This paper presents the development of filtering methods for positron emission tomography (PET) signals contaminated by radio frequency (RF) pulses for combined PET and clinical 3-T magnetic resonance imaging (MRI). The filtering methods include software, hardware, and hybrid correction methods. In the software correction method, PET signals are assessed, and valid signals are identified based on the characteristics of a typical PET signal using Field-Programmable Gate Array (FPGA)-based programming. The hardware correction method makes use of differential-to-single-ended and low-pass filter circuits for PET analog signals. The hybrid correction method involves the sequential application of both the hardware and software methods. Both valid and contaminated PET signals are measured with an oscilloscope. An evaluation is then made of the performance (energy resolution, photopeak channel, total counts, and coincidence timing resolution) of the PET detector modules with and without various MR sequences (gradient echo, spin echo T1 sequence). For all correction methods, the energy resolution, photopeak position, and coincidence timing resolution with MR sequences are similar (<; 3%) to those without MR sequences. However, the total count of each module depends greatly on the method applied. The hybrid correction method displays an ability to preserve (<; 1%) the total counts of the modules during various MR sequences. The results show that this filtering method, which can reject noise signals and reduce count loss while preserving the valid analog signals of MR sequences, is reliable and useful for the development of simultaneous PET-MRI.
机译:本文介绍了结合PET和临床3-T磁共振成像(MRI)的射频(RF)脉冲污染的正电子发射断层扫描(PET)信号的滤波方法的发展。过滤方法包括软件,硬件和混合校正方法。在软件校正方法中,使用基于现场可编程门阵列(FPGA)的编程来评估PET信号,并基于典型PET信号的特征识别有效信号。硬件校正方法将差分至单端和低通滤波器电路用于PET模拟信号。混合校正方法涉及硬件和软件方法的顺序应用。有效和受污染的PET信号均通过示波器测量。然后评估带有和不带有各种MR序列(梯度回波,自旋回波T1序列)的PET检测器模块的性能(能量分辨率,光峰通道,总计数和同时定时分辨率)。对于所有校正方法,具有MR序列的能量分辨率,光峰位置和同时定时分辨率与没有MR序列的能量分辨率,光峰值位置和重合定时分辨率相似(<; 3%)。但是,每个模块的总数在很大程度上取决于所采用的方法。混合校正方法显示了在各种MR序列中保留(<; 1%)模块总数的能力。结果表明,该滤波方法在保留MR序列的有效模拟信号的同时,可以抑制噪声信号并减少计数损失,对于同步PET-MRI的开发是可靠且有用的。

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