Advances in Wearable Biosensors for Non-Invasive Biofluid Monitoring. [PDF]
Mondal R, Saikia MJ.
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Synthetic Biology-Enabled Biosensing Platforms for Point-of-Care In Vitro Diagnostics: Programmable Modules, Clinical Applications, and Translational Challenges. [PDF]
Bao C +8 more
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Paper-Based Microfluidic Devices: A Powerful Strategy for Rapid Detection. [PDF]
Liu X +9 more
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Thermal Effects in Microfluidic Electrokinetic Flows: From Limitation to Design Opportunity. [PDF]
Roy T.
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Advances in Foodborne Pathogen Detection: From Conventional Confirmation to Integrated and Intelligent Platforms. [PDF]
Pan X, Ding X.
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Smart microfluidic devices integrated in electrochemical point-of-care platforms for biomarker detection in biological fluids. [PDF]
Mazzaracchio V, Arduini F.
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Determination of nitrite in saliva using microfluidic paper-based analytical devices [PDF]
Point-of-care platforms can provide fast responses, decrease the overall cost of the treatment, allow for in-home determinations with or without a trained specialist, and improve the success of the treatment. This is especially true for microfluidic paper-based analytical devices (μPAD), which can enable the development of highly efficient and ...
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Microfluidic Paper-Based Analytical Devices: From Design to Applications
Chemical Reviews, 2021Microfluidic paper-based analytical devices (μPADs) have garnered significant interest as a promising analytical platform in the past decade. Compared with traditional microfluidics, μPADs present unique advantages, such as easy fabrication using established patterning methods, economical cost, ability to drive and manipulate flow without equipment ...
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