Riedel C H, Keppelen M, Nani S, Merges R D, Dössel O
Institut für Biomedizinische Technik, Universität Karlsruhe (TH), Kaiserstr 12, 76131 Karlsruhe, Germany.
Physiol Meas. 2004 Feb;25(1):403-11. doi: 10.1088/0967-3334/25/1/043.
In this study the performance of an axial gradiometer sensor for magnetic induction tomography was investigated and the results of measurements to determine the precision and sensitivity of the sensor were undertaken. In the first part of the study a single gradiometer sensor was used and the noise and drift were measured for two excitation current values at a single frequency of 600 kHz. The variations of the real and imaginary received signal components with conductivity were then obtained for samples with 0-5 S m(-1). Both sets of measurements were repeated using two different forms of capacitive shielding. In the second part of the study the results of preliminary measurements obtained with a 2 x 2 planar matrix of axial gradiometers are given. The results of a simulation of a similar matrix using a commercial electromagnetic field calculation programme are also presented for comparison. For the sample utilized, the sensor output showed a linear variation with conductivity for the imaginary component of 0.033 mV S(-1) m using an excitation current of 316 mA at 600 kHz. No apparent correlation with conductivity for the real component was observed. The noise and drift of the imaginary component of the sensor output were 0.001 mV and 0.006 mV respectively, for the same excitation current. The results of the planar matrix measurements and simulations suggest that significant sensitivity is provided by using the measurement coils of the adjacent sensors. The measurement results however suggest that large improvements in the sensor noise and drift performance are required for these data to be of use.
在本研究中,对用于磁感应断层成像的轴向梯度仪传感器的性能进行了研究,并开展了测量以确定该传感器的精度和灵敏度。在研究的第一部分,使用了单个梯度仪传感器,并在600 kHz的单一频率下针对两个激励电流值测量了噪声和漂移。然后针对电导率为0 - 5 S m(-1)的样品,获得了实部和虚部接收信号分量随电导率的变化情况。使用两种不同形式的电容屏蔽重复了这两组测量。在研究的第二部分,给出了使用2×2轴向梯度仪平面矩阵获得的初步测量结果。还展示了使用商业电磁场计算程序对类似矩阵进行模拟的结果以作比较。对于所使用的样品,在600 kHz频率下使用316 mA的激励电流时,传感器输出的虚部对于电导率呈现出0.033 mV S(-1) m的线性变化。对于实部,未观察到与电导率有明显相关性。对于相同的激励电流,传感器输出虚部的噪声和漂移分别为0.001 mV和0.006 mV。平面矩阵测量和模拟的结果表明,使用相邻传感器的测量线圈可提供显著的灵敏度。然而,测量结果表明,要使这些数据有用,传感器的噪声和漂移性能需要大幅改善。