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用于低资源环境下荧光计校准的简单、经济高效且高度稳定的固态光致发光标准品。

Simple, cost-effective, highly stable solid-state photoluminescence standard for fluorometer calibration in low-resource settings.

作者信息

Eger Joshua, Bailly Mark, Christen Jennifer Blain

机构信息

School of Biological and Health Systems Engineering, Arizona State University, Tempe, AZ 85281, USA.

Center for Bioelectronics and Biosensors, Biodesign Institute, Arizona State University, Tempe, AZ 85281, USA.

出版信息

Opt Contin. 2024 Nov 15;3(11):2060-2077. doi: 10.1364/OPTCON.534029. Epub 2024 Oct 31.

Abstract

The proposed photoluminescence calibration standard comprises a solid-state phosphor film, neutral density gel filter(s), and a 3D-printed optomechanical cartridge. The proposed standard demonstrated exceptional photostability; photoluminescence did not deviate from the baseline more than 1.27% under 5 minutes of continuous illumination. Remarkably, there was no measurable degradation over a 3-year study. Precise photoluminescence intensity modulation was accomplished with neutral density gel filters (R > 0.9982) and optical apertures (R > 0.9970). A model for photoluminescence intensity as a function of neutral-density filter and optical aperture parameters yielded a mean percentage error (MPE) of 2.79%, indicating high precision. Inter-sample variability was low, with a mean coefficient of variation (CV) of 1.32%. Mean CV across 24 channels decreased from 11.88% to 1.51% following multi-point calibration of multichannel point-of-care (POC) fluorometers. Cost analysis revealed a per-unit cost between $0.49 to $1.80. This work suggests that the proposed calibration standards provide a cost-effective, highly stable solution for reliable fluorometer calibration in low-resource settings.

摘要

所提出的光致发光校准标准包括一个固态磷光体薄膜、中性密度凝胶滤光片和一个3D打印的光机械盒。所提出的标准表现出卓越的光稳定性;在连续光照5分钟的情况下,光致发光与基线的偏差不超过1.27%。值得注意的是,在一项为期3年的研究中没有可测量的降解。通过中性密度凝胶滤光片(R>0.9982)和光学孔径(R>0.9970)实现了精确的光致发光强度调制。一个将光致发光强度作为中性密度滤光片和光学孔径参数的函数的模型产生了2.79%的平均百分比误差(MPE),表明具有高精度。样本间的变异性较低,平均变异系数(CV)为1.32%。在对多通道即时护理(POC)荧光计进行多点校准后,24个通道的平均CV从11.88%降至1.51%。成本分析显示单位成本在0.49美元至1.80美元之间。这项工作表明,所提出的校准标准为低资源环境下可靠的荧光计校准提供了一种经济高效、高度稳定的解决方案。

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