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Design of integrated optical Mach-Zehnder interferometer biosensor for ideal surveillance rapid diagnostic test

机译:集成光学马赫曾德尔干涉仪生物传感器的设计,用于理想的监视快速诊断测试

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Dengue is an emerging global health problem. There is still no cure or vaccine for dengue infection. As a result, disease surveillance is the only method to reduce the disease burden effectively through virus containment. Dengue diagnosis test plays a crucial role in disease surveillance due to the complexity of dengue pathogenesis. With the aid of immunochromatography based rapid diagnostic test (ICT-RDT), dengue infection can be diagnosed accurately. However, the major drawbacks of this convenient RDT are the lack of accuracy (range from 11% to 99%) and high cost per test (>RM 40). As a result, an ideal surveillance RDT is of high demand with the characteristic of high accuracy and low cost per test in particular. In this paper, integrated optical Mach-Zehnder interferometer (IO-MZI) biosensor is proposed to achieve this ideal surveillance RDT. The design of IO-MZI had been carried out by using three dimensional finite difference beam propagation method (3D-FD-BPM). The estimated detection limit of IO-MZI biosensor is found to be 5.448×10 RIU which is sufficient for dengue diagnostic.
机译:登革热是一个正在出现的全球性健康问题。仍然没有治愈登革热的方法或疫苗。结果,疾病监视是通过控制病毒有效减轻疾病负担的唯一方法。由于登革热发病机理的复杂性,登革热诊断测试在疾病监测中起着至关重要的作用。借助基于免疫色谱的快速诊断测试(ICT-RDT),可以准确诊断出登革热感染。但是,这种方便的RDT的主要缺点是缺乏准确性(范围从11%到99%)和每次测试的高成本(> RM 40)。结果,对理想的监视RDT的需求特别高,特别是每次测试的成本高,成本低。本文提出了集成光学马赫曾德尔干涉仪(IO-MZI)生物传感器来实现这一理想的监视RDT。 IO-MZI的设计是通过使用三维有限差分光束传播方法(3D-FD-BPM)进行的。 IO-MZI生物传感器的估计检测极限为5.448×10 RIU,足以进行登革热诊断。

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