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A wearable conformal bandage for non-invasive two-dimensional imaging of skin oxygenation (Conference Presentation)

机译:用于皮肤氧合的非侵入式二维成像的可穿戴保形绷带(会议介绍)

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The complex surface topology and soft mechanics of the skin poses a considerable challenge to the development of wearable, conformal sensors. As a results, current clinical assessments of healing-related skin parameters often rely on bulky and expensive optical systems that are difficult to deploy at the point of care. Here, using a rapid-drying, liquid bandage containing oxygen-sensing molecules, we created a wearable sensor bandage that conforms the surface geometry of skin and wounds, and provides two-dimensional maps of cutaneous oxygenation in a nondisruptive fashion. Custom oxygen sensing phosphors have been developed in house that are at least five times brighter than the commercial sensing molecules, enabling the visualization of oxygen concentration using a simple color camera or even by eye under ambient lighting conditions. The oxygen-sensing bandage has been applied to monitor tissue ischemia, graft integration, as well as the progression of burn in animal models. Recent studies have demonstrated its ability to track and quantify skin inflammation induced by complete Freund's adjuvant in an in vivo porcine model.
机译:皮肤的复杂表面拓扑和柔软的力学对可穿戴,保形传感器的发展构成了相当大的挑战。结果,当前对愈合相关的皮肤参数的临床评估通常依赖于难以在护理点部署的笨重和昂贵的光学系统。这里,使用含有氧传感分子的快速干燥液体绷带,我们创造了一种可穿戴的传感器绷带,符合皮肤和伤口的表面几何形状,并以不可行的方式提供皮肤氧合的二维图。定制氧气传感磷光体已经在房屋中开发,这些磷比商业传感分子比商业传感分子至少五倍,从而通过在环境照明条件下使用简单的彩色相机或甚至通过眼睛可视化氧浓度。已经应用氧传感绷带来监测组织缺血,移植物集成,以及动物模型中燃烧的进展。最近的研究证明了其在体内猪模型中追踪和量化完全弗氏佐剂的皮肤炎症的能力。

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