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A wireless strain sensor for wound monitoring with direct laser-defined patterning on a commercial dressing

机译:无线应变传感器,用于在伤口敷料上进行直接激光定义的图案监测伤口

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Controlled mechanical strain or stress on a wound site can promote accelerated neovascularization and cellular proliferation for improved wound healing; however, these mechanical forces have not been properly quantified due to a lack of standardized technique. As a solution, we developed a wireless strain sensor on a commercial wound dressing. The sensor consists of a flexible antenna coil whose resonant frequency changes in response to applied strain. The frequency change of the sensor is observed to be a linear function of applied strain in the range of 0-35%, with an average sensitivity of 150 kHz/%strain and negligible hysteresis. The sensor is fabricated through a simple process that consist of defining a screen-printing mask directly over the wound dressing using laser machining. The fabrication technique can be scaled up for mass production using roll-to-roll methods.
机译:受控机械应变或伤口部位的应力可以促进加速的新血管形成和细胞增殖,以改善伤口愈合;然而,由于缺乏标准化技术,这些机械力尚未适当地定量。作为解决方案,我们在商用伤口敷料上开发了一种无线应变传感器。传感器包括柔性天线线圈,其谐振频率响应于应用应变而变化。观察到传感器的频率变化是施加应变的线性函数在0-35%的范围内,其平均灵敏度为150kHz /%的菌株和可忽略的滞后。传感器通过简单的方法制造,该过程包括使用激光加工直接在伤口敷料上定义丝网印刷掩模。可以使用卷到辊方法来缩放制造技术以批量生产。

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