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Studies on the Temperature Distribution of a Thick Film Transcutaneous Oxygen Sensor and Its Thermal Influences on Oxygen Measurement

机译:厚膜经皮氧气传感器温度分布及其对氧气测量的热影响研究

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The partial pressures of gases, namely oxygen and carbon dioxide, in the arterial blood are important parameters for doctors to determine the respiratory conditions of patients. Currently in practice, there are a number of ways to measure these parameters, one of which is transcutaneous blood gas monitoring. This technique is a popular noninvasive measurement method for obtaining fast and relatively accurate responses. In this investigation, thick film technology has been employed to develop an amperometric oxygen sensor which consists of a heating module to elevate the temperature at the skin surface to transcutaneous levels. The heating module includes a heating element and its temperature is regulated by a temperature control circuit. Using an infrared camera, the transient and steady-state temperature distributions as well as the stability of the heating element have been analysed. The influence of temperature on the oxygen sensing module is also studied. In addition, a three-dimensional theoretical model is established to evaluate the thermal response of the sensor and subsequently compared with the results from the practical prototype. With this model, the design stages can be simplified and future heating modules for transcutaneous sensors could be generated and improved more easily and effectively
机译:动脉血中的气体分压,即氧气和二氧化碳,是医生确定患者呼吸状况的重要参数。当前在实践中,有多种方法可以测量这些参数,其中一种是经皮血气监测。该技术是一种流行的非侵入性测量方法,用于获得快速且相对准确的响应。在这项研究中,采用了厚膜技术来开发一种电流型氧气传感器,该传感器由一个加热模块组成,可将皮肤表面的温度升高至经皮水平。加热模块包括加热元件,并且其温度由温度控制电路调节。使用红外摄像机,已经分析了瞬态和稳态温度分布以及加热元件的稳定性。还研究了温度对氧气传感模块的影响。此外,建立了一个三维理论模型来评估传感器的热响应,然后将其与实际原型的结果进行比较。使用此模型,可以简化设计阶段,并且可以更轻松,更有效地生成将来的用于经皮传感器的加热模块,并对其进行改进。

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