IEEE Trans Biomed Circuits Syst. 2021 Feb;15(1):91-101. doi: 10.1109/TBCAS.2021.3050844. Epub 2021 Mar 30.
As most of the bio-molecules sizes are comparable to the terahertz (THz) wavelength, this frequency range has spurred great attention for bio-medical and bio-sensing applications. Utilizing such capabilities of THz electromagnetic wave, this paper presents the design and analysis of a new non-intrusive and label-free THz bio-sensor for aqueous bio-samples using the microfluidic approach with real-time monitoring. The proposed THz sensor unit utilizes the highly confined feature of the localized spoof surface plasmon (LSSP) resonator to get high sensitivity for any minute change in the dielectric value near it's surface. The proposed sensor, which is designed at 1 THz, exploits the reflection behavior (S) of the LSSP resonator as the sensing response. The proposed sensor has been designed with a high-quality factor of 192 to obtain a high sensitivity of 13.5 MHz/mgml. To validate the proposed concept, a similar sensor unit has been designed and implemented at microwave frequency owing to the geometry dependent characteristics of the LSSP. The developed sensor has got a highly sensitive response at microwave frequency with a sensitivity of 1.2771e-4 MHz/mgml. A customized read-out circuitry is also designed and developed to get the sensor response in terms of DC-voltage and to provide a proof of concept for the low-cost point of care (PoC) detection solution using the proposed sensor. It is anticipated that the proposed design of highly sensitive sensor will pave a path to develop lab-on-chip systems for bio-sensing applications.
由于大多数生物分子的尺寸与太赫兹(THz)波长相当,因此该频率范围引起了人们对生物医学和生物传感应用的极大关注。本文利用太赫兹电磁波的这种特性,提出了一种新的非侵入式和无标记的太赫兹生物传感器设计和分析,该传感器采用微流控方法,具有实时监测功能。所提出的太赫兹传感器单元利用局域赝表面等离激元(LSSP)谐振器的高度限制特性,获得了其表面附近介电值任何微小变化的高灵敏度。该传感器设计在 1 THz 处,利用 LSSP 谐振器的反射行为(S)作为传感响应。所提出的传感器具有 192 的高品质因数,可获得 13.5 MHz/mgml 的高灵敏度。为了验证所提出的概念,由于 LSSP 的几何特性,在微波频率下设计并实现了类似的传感器单元。开发的传感器在微波频率下具有高度灵敏的响应,灵敏度为 1.2771e-4 MHz/mgml。还设计和开发了定制的读出电路,以获得传感器的直流电压响应,并为使用所提出的传感器进行低成本即时护理(PoC)检测解决方案提供概念验证。预计,这种高灵敏度传感器的设计将为生物传感应用的片上实验室系统的发展铺平道路。