Noises and Signal-to-Noise Ratio of Nanosize EIS and ISFET Biosensors

L. Gasparyan, I. Mazo, V. Simonyan, F. Gasparyan
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引用次数: 1

Abstract

The results of comparative theoretical analyzes of the behavior of internal low-frequency noises, signal-to-noise ratio and sensitivity to DNA molecules for EIS and ISFET based nanosize biosensors are presented. It is shown that EIS biosensor is more sensitive to the presence of DNA molecules in aqueous solution than ISFET sensor. Internal electrical noises level decreases with the increase of concentration of DNA molecules in aqueous solution. In the frequency range 10−3 - 103 Hz noises level for EIS sensor about in three orders is higher than for ISFET sensor. In the other hand, signal-to-noise ratio for capacitive EIS biosensor is much higher than for ISFET sensor.
纳米EIS和ISFET生物传感器的噪声和信噪比
给出了基于EIS和ISFET的纳米生物传感器的内部低频噪声行为、信噪比和对DNA分子的灵敏度的比较理论分析结果。结果表明,EIS生物传感器对水溶液中DNA分子的存在比ISFET传感器更敏感。随着水溶液中DNA分子浓度的增加,内部电噪声水平降低。在10−3 ~ 103 Hz的频率范围内,EIS传感器的噪声水平比ISFET传感器高约3个数量级。另一方面,电容式EIS生物传感器的信噪比远高于ISFET传感器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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