Cheng K S, Simske S J, Isaacson D, Newell J C, Gisser D G
Department of Biomedical Engineering, Rensselaer Polytechnic Institute, Troy, NY 12180.
IEEE Trans Biomed Eng. 1990 Jan;37(1):60-5. doi: 10.1109/10.43616.
Electric current computed tomography is a process for determining the distribution of electrical conductivity inside a body based upon measurements of voltage or current made at the body's surface. Most such systems use different electrodes for the application of current and the measurement of voltage. This paper shows that when a multiplicity of electrodes are attached to a body's surface, the voltage data are most sensitive to changes in resistivity in the body's interior when voltages are measured from all electrodes, including those carrying current. This assertion is true despite the presence of significant levels of skin impedance at the electrodes. This conclusion is supported both theoretically and by experiment. Data were first taken using all electrodes for current and voltage. Then current was applied only at a pair of electrodes, with voltages measured on all other electrodes. We then constructed the second data set by calculation from the first. Targets could be detected with better signal-to-noise ratio by using the reconstructed data than by using the directly measured voltages on noncurrent-carrying electrodes. Images made from voltage data using only noncurrent-carrying electrodes had higher noise levels and were less able to accurately locate targets. We conclude that in multiple electrode systems for electric current computed tomography, current should be applied and voltage should be measured from all available electrodes.
电流计算机断层扫描是一种基于在人体表面进行的电压或电流测量来确定人体内部电导率分布的过程。大多数此类系统使用不同的电极来施加电流和测量电压。本文表明,当多个电极附着在人体表面时,从所有电极(包括那些承载电流的电极)测量电压时,电压数据对人体内部电阻率的变化最为敏感。尽管电极处存在显著水平的皮肤阻抗,但这一断言仍然成立。这一结论在理论和实验上均得到了支持。首先使用所有电极进行电流和电压测量来获取数据。然后仅在一对电极上施加电流,在所有其他电极上测量电压。接着我们根据第一个数据集通过计算构建第二个数据集。与使用非承载电流电极上直接测量的电压相比,使用重建数据能够以更好的信噪比检测目标。仅使用非承载电流电极的电压数据制作的图像具有更高的噪声水平,并且不太能够准确地定位目标。我们得出结论,在用于电流计算机断层扫描的多电极系统中,应从所有可用电极施加电流并测量电压。