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Flexible Hybrid Electronics for Monitoring Hypoxia

机译:用于监测缺氧的柔性混合电子产品

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摘要

Hypoxia refers to insufficient oxygen amounts at the tissue level unable to maintain adequate homeostasis. Severe hypoxia may occur in the absence of subjective breathlessness due to respiratory failure. Precise monitoring of low blood oxygen saturation is crucially desired, catering to the clinical requirements. However, current pulse oximeters cannot function well in monitoring peripheral oxygen saturation limited by the weak peripheral blood circulation at a low oxygen level. In this work, we propose a flexible hybrid electronic (FHE) with a compact structure and high sensitivity for conveniently monitoring hypoxia. This FHE is composed of 10-mu m thickness semiconductors with different materials, functionalities, and sizes. Its performance is demonstrated by monitoring arterial blood oxygen saturation (SaO(2)) at the body's different arteries. The absolute error is less than 2% within a SaO(2) ranging from 99% to 63%. The efficient techniques presented in this work may bring light to the next-generation flexible hybrid electronics and provide potential widespread use in research and clinical applications, especially for emergency treatment.
机译:缺氧是指组织水平的氧量不足,不能保持足够的稳态。由于呼吸衰竭导致的主观呼吸困难,严重缺氧可能发生。明确所需的低血氧饱和度的精确监测,迎合临床要求。然而,在监测低氧水平的弱外周血循环的监测限制的情况下,电流脉冲血氧计不能很好地起作用。在这项工作中,我们提出了一种灵活的混合电子(FHE),具有紧凑的结构和高灵敏度,可方便地监测缺氧。该FHE由10-MU M厚度半导体组成,具有不同的材料,功能和尺寸。通过监测身体不同动脉的动脉血氧饱和度(Sao(2))来证明其性能。 SAO(2)内的绝对误差小于99%至63%。本作工作中提出的有效技术可以将光线带到下一代灵活的混合电子产品,并在研究和临床应用中提供潜在的广泛应用,特别是对于紧急治疗。

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