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Noninvasive monitoring local variations of fever and edema on human: Potential for point-of-care inflammation assessment

机译:无创监测人类发烧和水肿的局部变化:即时诊断炎症的潜力

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Tissue inflammation is often accompanied by fever and edema, which are common and troublesome problems that probably trigger disability, lymphangitis, cosmetic deformity and cellulitis. Here we developed a device, which can measure concentration and temperature variations of water in local human body by extended near infrared spectroscopy in 900~1000 nm wavelength range. An experiment of four steps incremental cycling exercise was designed to change tissue water concentration and temperature of subjects. Body temperature was also estimated by tympanic thermometer and surface thermometer as comparisons during the experiment. In the stage of recovery after exercise, the signal detected by custom device is similar to tympanic thermometer at the beginning, but it is closer to the temperature of surface later. In particular, this signal shows a better linearity, and a significant change when the exercise was suspended. This study demonstrated the potential of optical touch-sensing for inflammation severity monitoring by measuring water concentration and temperature variations in local lesions.
机译:组织炎症通常伴有发烧和水肿,这是常见且麻烦的问题,很可能引发残疾,淋巴管炎,美容性畸形和蜂窝织炎。在这里,我们开发了一种可以通过扩展近红外光谱在900〜1000 nm波长范围内测量人体局部水的浓度和温度变化的装置。设计了四步增量自行车运动的实验,以改变受试者的组织水浓度和温度。还通过鼓室温度计和表面温度计估算了体温,作为实验过程中的比较。在运动后恢复阶段,自定义设备检测到的信号在开始时类似于鼓膜温度计,但后来更接近表面温度。特别是,此信号显示出更好的线性度,并且在暂停运动时显示出明显的变化。这项研究通过测量局部病变中的水浓度和温度变化,证明了光学触摸感应在炎症严重程度监测中的潜力。

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