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FPGA Based High Speed Data Acquisition System for Electrical Impedance Tomography

机译:基于FPGA的电阻层析成像高速数据采集系统。

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摘要

Electrical Impedance Tomography (EIT) systems are used to image tissue bio-impedance. EIT provides a number of features making it attractive for use as a medical imaging device including the ability to image fast physiological processes (>60 Hz), to meet a range of clinical imaging needs through varying electrode geometries and configurations, to impart only non-ionizing radiation to a patient, and to map the significant electrical property contrasts present between numerous benign and pathological tissues. To leverage these potential advantages for medical imaging, we developed a modular 32 channel data acquisition (DAQ) system using National Instruments’ PXI chassis, along with FPGA, ADC, Signal Generator and Timing and Synchronization modules. To achieve high frame rates, signal demodulation and spectral characteristics of higher order harmonics were computed using dedicated FFT-hardware built into the FPGA module. By offloading the computing onto FPGA, we were able to achieve a reduction in throughput required between the FPGA and PC by a factor of 32:1. A custom designed analog front end (AFE) was used to interface electrodes with our system. Our system is wideband, and capable of acquiring data for input signal frequencies ranging from 100 Hz to 12 MHz. The modular design of both the hardware and software will allow this system to be flexibly configured for the particular clinical application.
机译:电阻抗断层扫描(EIT)系统用于对组织生物阻抗进行成像。 EIT提供了许多功能,使其非常适合用作医学成像设备,包括对快速生理过程(> 60 Hz)成像的能力,通过变化的电极几何形状和配置来满足一系列临床成像需求,仅赋予非电离辐射给患者,并绘制大量良性和病理组织之间存在的显着电特性差异。为了利用这些潜在的优势进行医学成像,我们使用National Instruments的PXI机箱以及FPGA,ADC,信号发生器以及定时和同步模块开发了模块化32通道数据采集(DAQ)系统。为了获得高帧速率,使用内置在FPGA模块中的专用FFT硬件计算了高次谐波的信号解调和频谱特性。通过将计算卸载到FPGA,我们能够将FPGA和PC之间所需的吞吐量降低了32:1。使用定制设计的模拟前端(AFE)将电极与我们的系统连接。我们的系统是宽带的,能够为100 Hz至12 MHz的输入信号频率采集数据。硬件和软件的模块化设计将允许针对特定临床应用灵活配置该系统。

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