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Sensor structure concepts for the analysis or local radiation exposure of biological samples at Terahertz and Millimeter Wave Frequencies

机译:在太赫兹和毫米波频率下对生物样品进行分析或局部辐射暴露的传感器结构概念

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We have studied several sensor concepts for biomedical applications operating in the millimeter wave and terahertz range. On one hand, rectangular waveguide structure were designed and extended with microfluidic channels. In this way a simple analysis of aqueous solutions at various waveguide bands is possible. In our case, we focused on the frequency range between 75 GHz and 110 GHz. On the other hand, planar sensor structures for aqueous solutions have been developed based on coplanar waveguides. With these planar sensors it is possible to concentrate the interaction volume on small sensor areas, which achieve a local exposure of the radiation to the sample. When equipping the sensor with microfluidic structures the sample volume could be reduced significantly and enabled a localized interaction with the sensor areas. The sensors are designed to exhibit a broadband behavior up to 300 GHz. Narrow-band operation can also be achieved for potentially increased sensitivity by using resonant structures. Several tests with Glucose dissolved in water show promising results for the distinction of different glucose levels at millimeter wave frequencies. The planar structures can also be used for the exposure of biological cells or cell model systems like liposomes with electromagnetic radiation. Several studies are planned to distinguish on one hand the influence of millimeter wave exposure on biological systems and also to have a spectroscopic method which enables the analysis of cell processes, like membrane transport processes, with millimeter wave and terahertz frequencies by focusing the electric field directly on the analyzing sample.
机译:我们已经研究了几种在毫米波和太赫兹范围内运行的生物医学传感器概念。一方面,设计了矩形波导结构,并扩展了微流体通道。这样,可以简单分析各种波导带处的水溶液。在我们的案例中,我们专注于75 GHz至110 GHz之间的频率范围。另一方面,已经基于共面波导开发了用于水溶液的平面传感器结构。利用这些平面传感器,可以将相互作用体积集中在较小的传感器区域上,从而使辐射局部暴露于样品。当为传感器配备微流体结构时,样品量可以大大减少,并可以与传感器区域进行局部交互作用。这些传感器被设计为具有高达300 GHz的宽带性能。通过使用谐振结构,也可以实现窄带操作以潜在地提高灵敏度。几种将葡萄糖溶解在水中的测试显示了在毫米波频率下区分不同葡萄糖水平的有希望的结果。平面结构还可用于通过电磁辐射对生物细胞或细胞模型系统(如脂质体)进行曝光。计划进行几项研究,一方面区分毫米波暴露对生物系统的影响,还拥有一种能通过直接聚焦电场来分析毫米波和太赫兹频率的细胞过程(如膜运输过程)的光谱方法在分析样本上。

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