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Modeling the Debye dielectric response in the time domain for a liquid crystal-based biopotential optrode

机译:在基于液晶的生物状透露透露透露透露型透露透露透露透露透露透露透露透露透露透露透露透露透露透露透露透露OPTROTE的模拟介质响应

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Multielectrode arrays (MEAs) are widely used for recording biopotentials, with an ongoing research effort to improve their characteristics and performance. In this spirit, we are currently investigating a novel concept for a liquid crystal-based optical electrode (optrode) that has the potential to overcome some of the limitations of MEAs, including that of wiring complexity. In this paper we present a model to fully describe the electrical response of the proposed optrode to biopotentials, taking into account dielectric relaxation. Since the frequency dependence of the complex permittivity is difficult to specify in time-stepped finite element (FE) simulations, where the implementation of time-convolution is nontrivial, we adopt an alternative approach to dielectric relaxation via the polarization vector. This approach, which is based on the Debye model, is then implemented in a FE model of the optrode. We show that the dielectric response of the liquid crystal layer has an effect on the complex signal behavior of the sensed biopotentials that must be taken into account when modeling the optrode.
机译:多电极阵列(MEA)广泛用于记录生物能递,具有持续的研究努力,以提高其特点和性能。在这种精神下,我们目前正在研究一种基于液晶的光电极(Optroide)的新颖概念,其具有克服一些测量的一些限制,包括布线复杂性的局部局限性。在本文中,我们提出了一种模型,以完全描述所提出的Optrode对生物异调的电气响应,考虑到介电松弛。由于复杂介电常数的频率依赖性难以在时间阶跃的有限元(FE)模拟中,因此在执行时间卷积的情况下,我们采用通过偏振向量来采用介电松弛的替代方法。然后基于DEYBE模型的这种方法在OPTRODE的FE模型中实现。我们表明,液晶层的介电响应对所感测的生物能量的复杂信号行为的效果有影​​响,该方法在建模Optrode时必须考虑到。

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