论文标题

基于等离子超材料的病毒检测系统:综述

Plasmonic metamaterial based virus detection system: a review

论文作者

Hassan, Mohammad Muntasir, Sium, Farhan Sadik, Islam, Fariba, Choudhury, Sajid Muhaimin

论文摘要

我们的大气正在不断变化,新的病原体不断爆发,现有的病原体正在连续发生突变。这些病原体中的一些,例如SARS-COV-2,变得如此致命,以至于他们将整个医疗保健的技术进步面临挑战。在这十年内,诸如寨卡病毒,埃博拉病毒,MERS-Coronavirus等人类也见证了其他几种致命的病毒爆发。尽管传统技术在某种程度上成功地检测了这些病毒,但这些技术是耗时的,昂贵的,并且需要经过训练的人类资源。基于等离子材料的生物传感器可能为低成本快速病毒检测铺平道路。因此,这篇综述详细讨论了有关病毒,病毒颗粒和抗原检测的基于等离子体和超材料的生物传感器的最新发展,以及该领域研究的未来方向。还简要讨论了生物传感,机器学习,人工智能和新型材料的量子特性的出现。

Our atmosphere is constantly changing and new pathogens are erupting now and then and the existing pathogens are mutating continuously. Some of these pathogens, such as SARS-CoV-2, become so deadly that they put the whole technological advancement of healthcare under challenge. Within this very decade several other deadly virus outbreaks were witnessed by humans such as Zika virus, Ebola virus, MERS-coronavirus etc. Though conventional techniques have succeeded in detecting these viruses to some extent, these techniques are time-consuming, costly, and require trained human-resources. Plasmonic metamaterial-based biosensors might pave the way to low-cost rapid virus detection. So this review discusses in details the latest development in plasmonics and metamaterial-based biosensors for virus, viral particles and antigen detection and the future direction of research in this field. Emergence of quantum properties in biosensing, application of machine learning, artificial intelligence and novel materials in biosensing is also discussed in brief.

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