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Body-monitoring with photonic textiles: a reflective heartbeat sensor based on polymer optical fibres

机译:用光子纺织品进行人体监测:基于聚合物光纤的反射型心跳传感器

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摘要

Knowledge of an individual's skin condition is important for pressure ulcer prevention. Detecting early changes in skin through perfusion, oxygen saturation values, and pressure on tissue and subsequent therapeutic intervention could increase patients' quality of life drastically. However, most existing sensing options create additional risk of ulcer development due to further pressure on and chafing of the skin. Here, as a first component, we present a flexible, photonic textile-based sensor for the continuous monitoring of the heartbeat and blood flow. Polymer optical fibres (POFs) are melt-spun continuously and characterized optically and mechanically before being embroidered. The resulting sensor shows flexibility when embroidered into a moisture-wicking fabric, and withstands disinfection with hospital-type laundry cycles. Additionally, the new sensor textile shows a lower static coefficient of friction (COF) than conventionally used bedsheets in both dry and sweaty conditions versus a skin model. Finally, we demonstrate the functionality of our sensor by measuring the heartbeat at the forehead in reflection mode and comparing it with commercial finger photoplethysmography for several subjects. Our results will allow the development of flexible, individualized, and fully textile-integrated wearable sensors for sensitive skin conditions and general long-term monitoring of patients with risk for pressure ulcer.
机译:了解个人的皮肤状况对于预防压疮很重要。通过灌注,氧饱和度值,组织压力和随后的治疗干预来检测皮肤的早期变化,可以大大提高患者的生活质量。然而,由于对皮肤的进一步压力和擦伤,大多数现有的感测选择产生了溃疡发展的额外风险。在这里,作为第一个组件,我们提出了一种基于光子纺织品的灵活传感器,用于连续监测心跳和血流。聚合物光纤(POF)会被连续熔纺,并在绣花之前进行光学和机械表征。最终的传感器在绣有吸湿排汗的面料时显示出灵活性,并能承受医院式洗衣周期的消毒。此外,与皮肤模型相比,在干燥和出汗条件下,新型传感器纺织品均显示出比常规床单更低的静摩擦系数(COF)。最后,我们通过在反射模式下测量前额的心跳,并将其与商用手指​​光电容积描记法进行比较,以证明我们的传感器的功能。我们的结果将允许开发用于敏感皮肤状况的灵活,个性化和完全与纺织品集成的可穿戴式传感器,并对患有压疮风险的患者进行常规的长期监测。

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