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Temperature detection system for Renal Denervation Catheter application

机译:温度检测肾脏消除导管施用系统

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Hypertension, in other words called high blood pressure, is a chronic and serious medical condition that considerably increases the risks of other ailments associated with the heart, brain, and kidney. Minimally invasive catheter-based renal denervation procedure is an effective way to treat hypertension for patients whose blood pressure level was unable to be brought under control by medication. However, for such systems an accurate temperature monitoring system is required to control the ablation power for a successful procedure and to avoid unwanted tissue damage. In this paper, the development of a platinum-based resistance temperature detector is presented. The temperature sensor is modeled using finite element analysis simulation and realized by silicon microfabrication. To ensure the performance of each fabricated sensor die, the test and characterization methodology of the sensor is translated and carried out using fully automatic test equipment. In this work, we are able to achieve a relatively large change in resistance of more than 15% with respect to the temperature change from 20 °C to 85 °C. Platinum as sensor material provided a linear relationship between change in resistance and temperature. This biocompatible resistance temperature detector sensor with its linear and consistent performance will allow us to accurately monitor the temperature in the renal denervation application.
机译:高血压,换句话说,叫做高血压,是一种慢性和严重的医疗状况,可大大增加与心脏,脑和肾脏相关的其他疾病的风险。基于微创导管的肾去神置程序是治疗血压水平无法通过用药控制无法引起的患者的高血压的有效方法。然而,对于这种系统,需要精确的温度监测系统来控制消融电力以实现成功的程序,并避免不需要的组织损伤。本文介绍了铂基电阻温度检测器的发展。温度传感器采用有限元分析模拟建模,并通过硅微制造实现。为确保每个制造的传感器模具的性能,使用全自动测试设备进行翻译和执行传感器的测试和表征方法。在这项工作中,我们能够在20°C至85°C的温度变化方面实现超过15%的电阻的相对大的变化。铂金作为传感器材料,提供了抗性和温度变化之间的线性关系。这种生物相容性电阻温度检测器传感器具有线性和一致的性能,使我们能够准确地监测肾脏消除施用中的温度。

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