2025

Plasmonic SPR biosensor with bayesian regression for non-invasive protein biomarker detection.

Scientific reports Ahmed AM, Wekalao J, Aljaafreh MJ, Zoubi WA, Elsayed HA, Mehaney A, Rajakannu A
阅读原文 PDF DOI PubMed

组成图示

示意图生成中

传感器类型

检测对象

检测原理

检测灵敏度

效应效果

传感器的构成

中文摘要

英文摘要

This paper presents a designed metasurface sensor for protein biomarkers detection. The design of this metasurface structure is essentially dependent on the coating of four identical figure-eight-shaped resonators of MXene through black phosphorus and graphene. Meanwhile, the performance analysis demonstrates a competitive sensitivity (395 GHz/RIU) with a linear frequency response of R² = 0.954 and protein biomarker concentration (R² = 0.956). The sensor exhibits stable performance across 0.31-0.46 THz and maintains consistent operation at incident angles up to 30°. Interestingly, this tunability is achieved through graphene chemical potential modulation, with transmittance decreasing from 97.7% to 66.7% as its value increases. Additionally, the machine learning optimization using Bayesian Ridge Regression demonstrates exceptional predictive capabilities for both refractive index variations (R² ≈ 86%) and angular dependencies (R² ≈ 96%). This integrated photonic-microfluidic sensor platform offers significant potential for early detection of neurological disorders through rapid, sensitive, and scalable brain tumor biomarker analysis.

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