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Noncontact scanning electrical impedance imaging

机译:非接触式扫描电阻抗成像

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We are interested in applying electrical impedance imaging to a single cell because it has potential to reveal both cell anatomy and cell function. Unfortunately, classic impedance imaging techniques are not applicable to this small scale measurement due to their low resolution. In this paper, a different method of impedance imaging is developed based on a noncontact scanning system. In this system, the imaging sample is immersed in an aqueous solution allowing for the use of various probe designs. Among those designs, we discuss a novel shield-probe design that has the advantage of better signal-to-noise ratio with higher resolution compared to other probes. Images showing the magnitude of current for each scanned point were obtained using this configuration. A low-frequency linear physical model helps to relate the current to the conductivity at each point. Line-scan data of high impedance contrast structures can be shown to be a good fit to this model. The first two-dimensional impedance image of biological tissues generated by this technique is shown with resolution on the order of 100 μm. The image reveals details not present in the optical image.
机译:我们对将电阻抗成像应用于单个细胞感兴趣,因为它具有揭示细胞解剖结构和细胞功能的潜力。不幸的是,由于其低分辨率,经典的阻抗成像技术不适用于这种小规模的测量。在本文中,基于非接触式扫描系统,开发了另一种阻抗成像方法。在该系统中,将成像样品浸入水溶液中,从而可以使用各种探针设计。在这些设计中,我们讨论了一种新颖的屏蔽探针设计,与其他探头相比,该设计具有更好的信噪比和更高的分辨率的优势。使用此配置可​​获得显示每个扫描点电流大小的图像。低频线性物理模型有助于将电流与每个点的电导率相关联。高阻抗对比结构的线扫描数据可以证明非常适合该模型。通过此技术生成的生物组织的第一个二维阻抗图像显示的分辨率约为100μm。该图像揭示了光学图像中不存在的细节。

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