用于翻译应用的色度传感:从颜料到机制
Zhicheng Jin1, Wonjun Yim2, Maurice Retout1
1Aiiso Yufeng Li Family Department of Chemical and Nano Engineering, University of California, San Diego, La Jolla, CA 92093, USA. jjokerst@ucsd.edu.
Chemical Society reviews
|June 5, 2024
概括
色度传感器为医疗诊断提供快速,低成本的检测. 这篇评论详细介绍了它们的组件,设计和应用,强调了色度传感技术的进步.
科学领域:
- *先进的材料科学和纳米技术在分析化学中的应用.
- *跨学科的研究桥梁化学,工程和生物医学科学.
背景情况:
- * 色度传感器提供即时的视觉结果,与复杂的,依赖仪器的方法形成鲜明对比.
- * 优点包括速度,高吞吐量,可负担性,便携性和易用性,推动点诊断 (POC) 诊断的采用.
研究的目的:
- * 审查色度测量传感系统的基本组件和设计原则.
- * 介绍各种POC色度仪器的理由和例子.
- *讨论特定的色度测量格式,分析器组织的测试,以及未来的挑战和前景.
主要方法:
- *核心组件的总结:颜色试剂,识别相互作用和采样程序.
- * 介绍POC设备的设计策略,如侧流,纸质和可穿戴传感器.
- * 讨论组合和可激活色度测量系统.
主要成果:
- *详细概述色度测量传感系统设计.
- *各种POC设备和传感机制的例子.
- * 为了清晰度,通过分析物身份进行测试的组织.
结论:
- * 因其固有的优势,色度传感器对于推进POC诊断至关重要.
- *在材料,纳米技术和数字分析领域的持续创新将进一步增强传感器的能力.
- * 本综述是开发下一代色度检测方案的资源.
相关概念视频
Photoluminescence: Applications
387
Photoluminescence offers a wide range of applications due to its inherent sensitivity and selectivity. This technique allows for both direct and indirect analyses of the analyte. Direct quantitative analysis is possible when the analyte exhibits a favorable quantum yield for fluorescence or phosphorescence. However, an indirect analysis may be feasible if the analyte is not fluorescent or phosphorescent, or if the quantum yield is unfavorable. Indirect methods include reacting the analyte with...
387
Measuring Reaction Rates
25.0K
Polarimetry finds application in chemical kinetics to measure the concentration and reaction kinetics of optically active substances during a chemical reaction. Optically active substances have the capability of rotating the plane of polarization of linearly polarized light passing through them—a feature called optical rotation. Optical activity is attributed to the molecular structure of substances. Normal monochromatic light is unpolarized and possesses oscillations of the electrical...
25.0K
Protein Dynamics in Living Cells
2.1K
Different fluorescence-based techniques are used to study the protein dynamics in living cells. These techniques include FRAP, FRET, and PET.
Fluorescent recovery after photobleaching (FRAP) is a fluorescent-protein-based detection technique used to quantify protein movement rates within the cell. This method exposes a small portion of the cell to an intense laser beam. The laser beam causes permanent photobleaching of the fluorophore-tagged proteins in the exposed region. As the bleached...
Fluorescent recovery after photobleaching (FRAP) is a fluorescent-protein-based detection technique used to quantify protein movement rates within the cell. This method exposes a small portion of the cell to an intense laser beam. The laser beam causes permanent photobleaching of the fluorophore-tagged proteins in the exposed region. As the bleached...
2.1K


