Department of Biomedical Engineering, Fourth Military Medical University, Xi'an, Shaanxi, 710032, People's Republic of China.
Physiol Meas. 2009 Dec;30(12):1293-301. doi: 10.1088/0967-3334/30/12/001. Epub 2009 Oct 20.
An accurate impedance model of a skull plays an important role in the simulation research on source localization of EEG and brain EIT (electrical impedance tomography), etc. On the basis of the large number of impedance and resistivity data obtained from our previous measurement on the live human skull, in this study we established the equivalent circuit models of six types of skull samples in the 30 Hz-3 MHz frequency range and analyzed the fitting performance of the models. The six types of skull samples are standard tri-layer, quasi-tri-layer, standard compact, quasi-compact, dentate suture and squamous suture. The results showed that the difference of the real part between the CPE (constant phase model) model and the measured data was less than 1% for all skull tissue types when the optimized characteristic parameters (rho(0), rho(infinity), alpha and f(c)) were adopted in the model. It is the first time studying the impedance model of different types of skulls, and it may provide accurate modeling of the skull to improve the accuracy of the related research on bioelectricity of the head and the biological effects of the electromagnetic field.
颅骨的精确阻抗模型在 EEG 和脑 EIT(电阻抗断层成像)等源定位的模拟研究中起着重要作用。基于我们之前对活体人头骨测量获得的大量阻抗和电阻率数据,本研究在 30 Hz-3 MHz 频率范围内建立了六种颅骨样本的等效电路模型,并分析了模型的拟合性能。这六种颅骨样本分别为标准三层、准三层、标准致密型、准致密型、齿状缝和鳞缝。结果表明,当采用优化的特征参数(rho(0)、rho(infinity)、alpha 和 f(c))时,所有颅骨组织类型的 CPE(恒相模型)模型与实测数据的实部差异均小于 1%。这是首次研究不同类型颅骨的阻抗模型,它可能为颅骨的精确建模提供依据,从而提高头部生物电相关研究和电磁场生物效应的准确性。