Liu Ruigang, Dong Xiuzhen, Fu Feng, You Fusheng, Shi Xuetao, Ji Zhenyu, Wang Kan
Department of Medical Electronic Engineering, Faculty of Biomedical Engineering, Fourth Military Medical University, Xi'an, 710033, People's Republic of China.
Physiol Meas. 2007 Jul;28(7):S85-100. doi: 10.1088/0967-3334/28/7/S07. Epub 2007 Jun 26.
Electrical impedance scanning (EIS) is a kind of potential bio-impedance measurement technology, especially aiding the diagnosis of breast cancer in women. By changing the frequency of the driving signal in turn while keeping the other conditions stable, multi-frequency measurement results on the object can be obtained. According to the least square method and circuit theory, the parameters in two models are deduced when measured with data at multiple driving frequencies. The arcs, in the real and imaginary parts of a trans-admittance coordinate, made by the evaluated parameters fit well the realistic data measured by our EIS device on female subjects. The Cole-Cole model in the form of admittance is closer to the measured data than the three-element model. Based on the evaluation of the multi-frequency parameters, we presented parameter mapping of EIS using two kinds of circuit model: one is the three-element model in the form of admittance and the other is the Cole-Cole model in the form of admittance. Comparing with classical admittance mapping at a single frequency, the multi-frequency parameter mapping will provide a novel vision to study EIS. The multi-frequency approach can provide the mappings of four parameters, which is helpful to identify different diseases with a similar characteristic in classical EIS mapping. From plots of the real and imaginary parts of the admittance, it is easy to make sure whether there exists abnormal tissue.
电阻抗扫描(EIS)是一种潜在的生物阻抗测量技术,尤其有助于女性乳腺癌的诊断。在保持其他条件稳定的同时依次改变驱动信号的频率,可以获得对物体的多频测量结果。根据最小二乘法和电路理论,在多个驱动频率下进行测量时,可以推导出两种模型中的参数。在跨导纳坐标的实部和虚部中,由评估参数形成的弧线与我们的EIS设备在女性受试者身上测量的实际数据拟合良好。导纳形式的科尔 - 科尔模型比三元模型更接近测量数据。基于对多频参数的评估,我们使用两种电路模型展示了EIS的参数映射:一种是导纳形式的三元模型,另一种是导纳形式的科尔 - 科尔模型。与单频经典导纳映射相比,多频参数映射将为研究EIS提供新的视角。多频方法可以提供四个参数的映射,这有助于在经典EIS映射中识别具有相似特征的不同疾病。从导纳实部和虚部的图中,很容易确定是否存在异常组织。