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Non-Contact Radiofrequency Inductive Sensor for the Dielectric Characterization of Burn Depth in Organic Tissues

机译:非接触式射频感应传感器用于有机组织中烧伤深度的介电特性

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摘要

A flat circular transmission line-based 300 MHz resonator was implemented for the non-contact assessment of burn depths in biological tissues. Used as a transmit-and-receive sensor, it was placed at a 2 mm distance from organic material test samples (pork fillet samples) which were previously burned on their surface in various heating conditions involving different temperatures, durations, and procedures. Data extracted from the sensor by means of a distant monitoring coil were found to clearly correlate with the depth of burn observed in the tissue samples (up to 40% sensor output changes for a 7 mm burn depth) and with the heating conditions (around 5% sensor output changes observed in samples burned with identical heating procedures but at two different temperatures—75 °C and 150 °C—and around 40% sensor output changes observed between samples heated at the same temperature but with different heating procedures). These results open the way for the development of easy-to-implement assessment and monitoring techniques for burns, e.g., integrated in wearable medical dressing-like monitoring devices.
机译:实施了基于扁平圆形传输线的300 MHz谐振器,以非接触方式评估生物组织中的燃烧深度。用作发射和接收传感器,它被放置在与有机材料测试样品(猪肉里脊肉样品)相距2 mm的位置,这些样品先前已在涉及不同温度,持续时间和程序的各种加热条件下在其表面燃烧。发现通过远距离监视线圈从传感器提取的数据与组织样本中观察到的灼伤深度(对于7 mm的灼伤深度,传感器输出变化高达40%)和加热条件(大约5在相同的加热程序但在两个不同的温度(75°C和150°C)下燃烧的样品中观察到的传感器输出变化的百分比,在相同温度但加热程序不同的样品之间观察到的传感器输出变化的百分比约为40%)。这些结果为开发易于实施的烧伤评估和监测技术开辟了道路,例如,将其集成到可穿戴式医用敷料样监测设备中。

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