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使用优化的双槽级联微环谐振器对不同贫血状态进行无标记识别。

Label free identification of the different status of anemia disease using optimized double-slot cascaded microring resonator.

机构信息

Department of Physics, Shiraz University of Technology, 31371555, Shiraz, Fars, Iran.

Burn and Wound Healing Research Centre, Shiraz University of Medical Sciences, 71345-1978, Shiraz, Iran.

出版信息

Sci Rep. 2022 Apr 1;12(1):5548. doi: 10.1038/s41598-022-09504-2.

Abstract

An optical-based label-free biosensors including two indirectly coupled double-slot-waveguide-based microring resonator was designed and optimized for sensing purpose. Then, the optimized system was applied for the detection of hemoglobin concentration in anemia disease. The results were simulated based on the variational finite-difference time domain (varFDTD) method using the Lumerical software (Mode solutions) and the optimum geometrical parameters were determined to realize an optimum light transmission via the sensor. Nine different concentrations of hemoglobin in men and women were applied into the sensor and the status of anemia was identified based on the patients' gender and different status of anemia disease, including the normal, mild, moderate, severe and life-threatening status. A sensitivity as high as 1024 nm/RIU with the minimum deflection limit of 4.88 × 10 RIU were measured for this biosensor, which introduces a high precision and micro-scale lab-on-a-chip micro device for health monitoring of the anemia.

摘要

设计并优化了一种基于光学的无标记生物传感器,包括两个间接耦合的基于双槽波导的微环谐振器,用于传感目的。然后,将优化后的系统应用于贫血疾病中血红蛋白浓度的检测。结果基于变分有限差分时域(varFDTD)方法使用 Lumerical 软件(模式解)进行模拟,并确定最佳几何参数以实现传感器的最佳光传输。将男性和女性的 9 种不同浓度的血红蛋白应用于传感器,并根据患者的性别和不同的贫血疾病状态,包括正常、轻度、中度、重度和危及生命的状态,确定贫血状态。该生物传感器的灵敏度高达 1024nm/RIU,最小偏转角限制为 4.88×10 RIU,为贫血的健康监测引入了高精度和微尺度的片上实验室微器件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/757f/8975812/4dac92038351/41598_2022_9504_Fig1_HTML.jpg

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