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CONTACTLESS MICROWAVE SENSORS AND THEIR APPLICATION IN BIOLOGICAL SINGLE USE TECHNIQUES

机译:非接触式微波传感器及其在生物单次使用中的应用

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In bioprocess technology, highly-sensitive robust sensors are required for operation in single use bioreactors (SUB) without direct contact to the fluid under analysis. Measuring the change of dielectric properties (permittivity and conductivity) at microwave frequencies allows the investigation of biological and chemical matter and processes, e.g., cell growth, cell metabolism and the concentration of large aqueous based molecules. This contribution describes a high frequency sensor that combines detection in macro- or microfluidic networks with quick and precise analysis. These kinds of sensors can be installed directly to the outer surface of the culture device (Figure 1) or can be clamped onto tubing (Figure 2). A clamped on sensor consists of a fluidic channel placed between a micro-strip line waveguide combined with resonant properties.
机译:在生物过程技术中,需要一次性使用的生物反应器(SUB)而不与被分析的流体直接接触,才能使用高度灵敏的坚固传感器。在微波频率下测量介电性质(介电常数和电导率)的变化允许研究生物和化学物质和过程,例如细胞生长,细胞代谢和大型水基分子的浓度。此文稿描述了一种高频传感器,该传感器将宏或微流体网络中的检测与快速而精确的分析相结合。这些类型的传感器可以直接安装在培养设备的外表面(图1),也可以夹在管子上(图2)。夹钳式传感器由置于微带线波导之间的流体通道组成,并具有共振特性。

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