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An Osmotic Pressure Sensor for Monitoring the Level of Hydration in Biological Fluids

机译:用于监测生物流体中水合水平的渗透压传感器

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A miniaturized hydration sensor that records the electrolyte balance in biological fluids and that translates this quantity into an osmotic pressure signal has been developed. The sensor measures 16 mm mm and integrates a semi-permeable membrane, a piezoresistive pressure transducer, and an electronic readout platform. The dynamic measurement range of 220–340 mOsm (280 ± 60 mOsm covers a serious state of dehydration to a serious state of overhydration (represented by a %). Ion exchange membranes were found to be the best candidates for integration with the hydration sensor. Reverse osmosis membranes with physical pores (zero Da molecular cutoff) had high ionic leakage rates, in contrast to gas permeable membranes, which proved to be almost impermeable to water vapor. Consequently, the use of a Nafion NR211 membrane facilitated a sensor response with a time constant of 2.5 h, which conforms to the slow change in osmotic pressure associated with hydration. The low-power front-end circuit architecture is based on an analog pressure-to-frequency converter, consuming only 39.4 , and capable of recording changes in hydration with a resolution of 5.71 bits (ENOB. The small size of the sensor components, combined with the interface low-power architecture, renders it suitable for further miniaturization required for implantation into the human body.
机译:已经开发了一种微型水化传感器,该传感器可记录生物流体中的电解质平衡并将该量转换为渗透压信号。该传感器尺寸为16 mm mm,并集成了一个半透膜,一个压阻压力传感器和一个电子读数平台。动态测量范围为220–340 mOsm(280±60 mOsm),涵盖了严重的脱水状态至严重的过度水化状态(以%表示),发现离子交换膜是与水化传感器集成的最佳选择。带有物理孔(零Da分子截止)的反渗透膜具有高离子泄漏率,而透气膜却几乎不渗透水蒸气,因此,Nafion NR211膜的使用促进了传感器的响应。 2.5 h的时间常数,这与水合作用引起的渗透压的缓慢变化是一致的。低功耗前端电路架构基于模拟压力-频率转换器,仅消耗39.4的电压,并且能够记录下具有5.71位(ENOB)分辨率的水化。传感器组件的小尺寸加上接口低功耗架构,使其适合于进一步的小型化要求适用于植入人体。

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