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Electrical Bioimpedance Cerebral Monitoring. A Study of the Current Density Distribution and Impedance Sensitivity Maps on a 3D Realistic Head Model

机译:电生物阻抗脑监测。在3D逼真的头部模型上的电流密度分布和阻抗灵敏度图的研究

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There have been several studies of the application of electrical bioimpedance technology for brain monitoring in the past years. They have targeted a variety of events and injuries e.g. epilepsy or stroke. The current density distribution and the voltage lead field associated with an impedance measurement setup is of critical importance for the proper analysis of any dynamics in the impedance measurement or for an accurate reconstruction of an EIT image, specially a dynamic type. In this work for the first time, the current density distribution is calculated in a human head with anatomical accuracy and resolution down to 1 mm, containing up to 24 tissues and considering the frequency dependency of the conductivity of each tissue. The obtained current densities and the subsequent sensitivity maps are analyzed with a special focus on the dependency of the electrode arrangement and also the measurement frequency. The obtained results provide us with interesting and relevant information to consider in the design of any tool for electrical bioimpedance cerebral monitoring.
机译:在过去的几年中,已经有一些关于电生物阻抗技术在脑部监测中的应用的研究。他们针对各种事件和伤害,例如癫痫或中风。与阻抗测量设置相关的电流密度分布和电压引线场对于正确分析阻抗测量中的任何动态或精确重建EIT图像(尤其是动态类型)至关重要。在这项工作中,这是首次在人体头部中以解剖精度和低至1 mm的分辨率计算电流密度分布,其中包含多达24个组织,并考虑了每个组织的电导率的频率依赖性。分析获得的电流密度和随后的灵敏度图,尤其要注意电极布置的依赖性以及测量频率。获得的结果为我们提供了有趣且相关的信息,可用于设计任何用于电生物阻抗大脑监测的工具。

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