论文标题
综合光流传感器用于凝血风险监测的凝结风险监测,即在护理点上的患者
Integrated Optofluidic Sensor for Coagulation Risk Monitoring in COVID-19 Patients at Point-of-Care
论文作者
论文摘要
尽管CoVID-19感染的基础病理生理学仍然尚未完全理解,但越来越多的证据表明,它与严重患者的过度凝聚密切相关。医生可以选择使用抗凝剂量来治疗重症监护病房的患者。一种快速,易于且低成本的解决方案来监测护理点的凝血状态,可能会通过为患者提供受控剂量的药物来帮助治疗,并了解该疾病的潜在病理生理学。血栓射击,临床标准是准确的。当将小型化到手持式外形时,它的便携性有限和敏感性低。在文章中,我们总结了研究,有助于迈向将微流体和光子传感器技术结合的集成的光氟化器设备。微流体用于进行血液预处理,光子传感器在设备本身的实时读数中测量血液凝血状态。这些技术使其变得可移植和可扩展,并有可能成为开发CoVID-19患者和凝血病的诊断的一次性传感器的技术基础。
While the pathophysiology underlying the COVID-19 infection remains incompletely understood, there is growing evidence to indicate that it is closely correlated to hypercoagulation among severely ill patients. Doctors may choose for use anti-coagulation doses to treat the patients at intensive care units. A rapid, easy, and low-cost solution to monitor the coagulation status at the point-of-care may help with treatment by enabling the administration of controlled doses of medication to patients and to understand the disease's underlying pathophysiology. Thromboelastography, the clinical standard is accurate; it suffers from limited portability and low sensitivity when miniaturized to handheld form factor. In the article, we summarize research helping to advance towards an integrated optofluidic device combining microfluidics and photonic sensor technology. Microfluidics are used to perform blood pre-processing, and a photonic sensor measures blood coagulation status in real-time readout on the device itself. These techniques make it portable and scalable, potentially serving as technology foundation for the development of a disposable sensor for point-of-care diagnostics in COVID-19 patients and coagulopathy in general.