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Computational modeling of a novel liquid crystal-based optrode

机译:新型基于液晶的电极的计算模型

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Multielectrode arrays are a powerful tool for recording biopotentials, however they are limited by issues related to wiring complexity and channel-count. We present a novel concept for a liquid crystal-based optical electrode (optrode) that does not require the electrical circuitry associated with reading and amplifying each channel, thus providing superior spatial resolution and signal-to-noise ratio. Through computational modeling, we show that it is possible to accurately image biopotentials by coupling them to the electrodes of a LC cell and measuring their reflectance under parallel polarisers.
机译:多电极阵列是记录生物电势的强大工具,但是它们受到布线复杂性和通道数相关问题的限制。我们提出了一种基于液晶的光电极(光极)的新颖概念,它不需要与读取和放大每个通道相关的电路,从而提供了出色的空间分辨率和信噪比。通过计算模型,我们表明可以通过将生物电势耦合到LC电池的电极并在平行偏振器下测量其反射率来精确成像。

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