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叉指式传感器优化用于血液样本分析。

Interdigitated Sensor Optimization for Blood Sample Analysis.

机构信息

Institut Jean Lamour, Lorraine University (CNRS-UMR 7198), 54011 Nancy, France.

出版信息

Biosensors (Basel). 2020 Dec 16;10(12):208. doi: 10.3390/bios10120208.

Abstract

Interdigitated (ITD) sensors are specially adapted for the bioimpedance analysis (BIA) of low-volume (microliter scale) biological samples. Impedance spectroscopy is a fast method involving simple and easy biological sample preparation. The geometry of an ITD sensor makes it easier to deposit a sample at the microscopic scale of the electrodes. At this scale, the electrode size induces an increase in the double-layer effect, which may completely limit interesting bandwidths in the impedance measurements. This work focuses on ITD sensor frequency band optimization via an original study of the impact of the metalization ratio . An electrical sensor model was studied to determine the best ratio. A ratio of 0.6 was able to improve the low-frequency cutoff by a factor of up to 2.5. This theoretical approach was confirmed by measurements of blood samples with three sensors. The optimized sensor was able to extract the intrinsic electrical properties of blood in the frequency band of interest.

摘要

叉指式(ITD)传感器特别适用于低体积(微升规模)生物样本的生物阻抗分析(BIA)。阻抗谱是一种快速的方法,涉及简单和容易的生物样本制备。ITD 传感器的几何形状使得在电极的微观尺度上更容易沉积样本。在这个尺度上,电极尺寸会引起双电层效应的增加,这可能会完全限制阻抗测量中的有趣带宽。这项工作通过对金属化比的影响进行原始研究,专注于 ITD 传感器的频带优化。研究了一个电传感器模型,以确定最佳的金属化比。金属化比为 0.6 能够将低频截止提高 2.5 倍。通过三个传感器测量血液样本,验证了这种理论方法。优化后的传感器能够在感兴趣的频率范围内提取血液的固有电特性。

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