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DIRECTIONAL SENSITIVITY ANALYSIS OF A HYDROGEL-SUPPORTED ARTIFICIAL HAIR CELL

机译:水撑人工毛细胞的方向敏感性分析

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An artificial hair cell sensor imitates the function of cilia in natural hair cells in order to detect surrounding fluid displacement. Here, a novel structure for creating artificial hair cell sensors uses established methods of creating lipid bilayers at the interfaces of millimeter scale hydrogel shapes. This paper describes the fabrication of the sensor components and the manner in which they are assembled and tested. The hair's vibration can be detected by monitoring changes in the current produced by mechanical fluctuations in the bilayer. The cross-sectional geometry of the hair can be changed to enable directional sensitivity. Spectral analysis of the sensor current response indicates that frequencies and magnitudes change when a flattened hair is excited in different directions. Finally, the sensor is shown to become more sensitive with applied potential across the bilayer. Results agree with similar studies on this phenomenon.
机译:人造毛细胞传感器可模仿自然毛细胞中的纤毛功能,以检测周围的液体位移。在这里,一种用于创建人造毛细胞传感器的新颖结构使用了在毫米级水凝胶形状的界面处创建脂质双层的既定方法。本文介绍了传感器组件的制造以及它们的组装和测试方式。可以通过监视双层机械波动产生的电流变化来检测头发的振动。可以改变头发的横截面几何形状以实现方向敏感性。传感器电流响应的频谱分析表明,当扁平头发在不同方向上受到激励时,频率和幅度会发生变化。最后,显示出传感器对跨双层施加的电势变得更加敏感。结果与对此现象的类似研究相吻合。

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