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Design and Analysis of a Slotted Micro-cantilever based Biosensor for Detection of P24 Antigen in HIV Diagnoses

机译:基于缝隙微悬臂的生物传感器的设计与分析,用于HIV诊断中的P24抗原检测。

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This paper presents the design and simulation of a slotted micro-cantilever based biosensor for HIV (Human Immune Deficiency Virus) detection with P-24 antigen. In this work, dynamic mode analysis is performed to study the frequency and the deflection of the micro-cantilever. The design procedure and finite element analysis of the model are conducted by COMSOL Multiphysics 5.4 software. The model of the micro-cantilever is multilayered which contains seven slots. The antibody coating on the cantilever surface interacts the present antigen of P-24 in the blood sample which deflects the body of the micro-cantilever. The simulated result shows a significant change in the displacement of the cantilever which results in a better sensitivity. It is observed that the displacement of the proposed model is as 3.47×106 µm.
机译:本文介绍了一种基于缝隙微悬臂的生物传感器的设计和仿真,该传感器可用于检测带有P-24抗原的HIV(人类免疫缺陷病毒)。在这项工作中,进行动态模式分析以研究微悬臂梁的频率和挠度。模型的设计过程和有限元分析由COMSOL Multiphysics 5.4软件进行。微悬臂梁的模型是多层的,其中包含七个插槽。悬臂表面上的抗体涂层与血液样本中的P-24抗原相互作用,该抗原使微悬臂的身体发生偏转。仿真结果表明,悬臂的位移发生了显着变化,从而产生了更好的灵敏度。可以看出,该模型的位移为3.47×10 6 微米

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