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基于表面的校准方法,实现比色分析系统的动态和精确定量。

A surface-based calibration approach to enable dynamic and accurate quantification of colorimetric assay systems.

机构信息

Department of Biomedical Engineering, Florida International University, 10555 W Flagler St, EC 2612, Miami, FL, 33174, USA.

出版信息

Anal Methods. 2021 Sep 30;13(37):4290-4297. doi: 10.1039/d1ay01130h.

Abstract

Colorimetry is widely used in assay systems for its low-cost, ease-of-use, rapidity, moderate storage requirements and intuitively visible effects. However, the application is limited due to its relatively low sensitivity. Conventional colorimetric calibration methods often use a fixed incubation time that can limit the detection range, system robustness and sensitivity. In this paper, we used color saturation to measure the accumulation of product (correlation coefficient = 0.9872), and we created a novel "calibration mesh" method based on an expanded sigmoid function to enhance sensitivity. The novel calibration mesh method can be adapted for a wide variety of assay systems to improve robustness and detection range, and provide a dynamic and faster output.

摘要

比色法因其低成本、使用方便、快速、适度的储存要求和直观可见的效果而被广泛应用于检测系统中。然而,由于其灵敏度相对较低,其应用受到限制。传统的比色校准方法通常使用固定的孵育时间,这可能会限制检测范围、系统的稳健性和灵敏度。在本文中,我们使用颜色饱和度来测量产物的积累(相关系数 = 0.9872),并创建了一种基于扩展的 S 形函数的新的“校准网格”方法来提高灵敏度。新的校准网格方法可以适应各种检测系统,以提高稳健性和检测范围,并提供更快的动态输出。

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