Tšoeu M S, Inggs M R
IEEE Trans Biomed Circuits Syst. 2016 Jun;10(3):556-66. doi: 10.1109/TBCAS.2015.2487321. Epub 2015 Dec 29.
Electrical Impedance Tomography (EIT) has been dominated by the use of Time Division Multiplexing (TDM) and Frequency Division Multiplexing (FDM) as methods of achieving orthogonal injection of excitation signals. Code Division Multiplexing (CDM), presented in this paper is an alternative that eliminates temporal data inconsistencies of TDM for fast changing systems. Furthermore, this approach eliminates data inconsistencies that arise in FDM when frequency bands of current injecting electrodes are chosen over frequencies that have large changes in the imaged object's impedance. To the authors knowledge no fully functional wideband system or simulation platform using simultaneous injection of Gold codes currents has been reported. In this paper, we formulate, simulate and develop a fully functional pseudo-random (Gold) code driven EIT system with 15 excitation currents and 16 separate voltage measurement electrodes. In the work we verify the use of CDM as a multiplexing modality in simultaneous injection EIT, using a prototype system with an overall bandwidth of 15 kHz, and attainable speed of 462 frames/s using codes with a period of 31 chips. Simulations and experiments are performed using the Electrical Impedance and Diffuse Optics Reconstruction Software (EIDORS). We also propose the use of image processing on reconstructed images to establish their quality quantitatively without access to raw reconstruction data. The results of this study show that CDM can be successfully used in EIT, and gives results of similar visual quality to TDM and FDM. Achieved performance shows average position error of 3.5% and size error of 6.2%.
电阻抗断层成像(EIT)一直以来主要采用时分复用(TDM)和频分复用(FDM)作为实现激励信号正交注入的方法。本文提出的码分复用(CDM)是一种替代方法,它消除了TDM在快速变化系统中的时间数据不一致性。此外,当在成像对象阻抗变化较大的频率之上选择电流注入电极的频段时,这种方法还消除了FDM中出现的数据不一致性。据作者所知,尚未有关于使用同时注入Gold码电流的全功能宽带系统或仿真平台的报道。在本文中,我们构建、模拟并开发了一个全功能的伪随机(Gold)码驱动的EIT系统,该系统有15个激励电流和16个独立的电压测量电极。在这项工作中,我们使用一个总带宽为15 kHz的原型系统,验证了CDM作为同时注入EIT中的一种复用方式的应用,并使用周期为31个码片的码实现了462帧/秒的可达速度。使用电阻抗与漫射光学重建软件(EIDORS)进行了模拟和实验。我们还建议对重建图像进行图像处理,以便在不获取原始重建数据的情况下定量确定其质量。本研究结果表明,CDM可成功应用于EIT,并且给出的视觉质量结果与TDM和FDM相似。所实现的性能显示平均位置误差为3.5%,尺寸误差为6.2%。