Although microfluidic paper-based analytical devices (μPADs) get a lot of attention in the scientific literature, they rarely reach the level of commercialization. One possible reason for this is a lack of application of machine learning techniques supporting the design, optimization and fabrication of such devices. This work demonstrates the potential of two chemometric techniques including design of experiments (DoE) and digital image processing to support the production of μPADs. On the example of a simple colorimetric assay for isoniazid relying on the protonation equilibrium of methyl orange, the experimental conditions were optimized using a D-optimal design (DO) and the impact of multiple factors on the μPAD response was investigated...
The deposition of chemical reagent inks on paper is a crucial step in the development and fabricatio...
Accurate diagnosis is the most important step in identifying and curing diseases. There are no accur...
An improved paper-based analytical device (PAD) using color screening to enhance device performance ...
The Use of Chemometrics for the Optimization of Experiments in Microfluidic Devices and Detection wi...
This manuscript reports on the application of chemometric methods for the development of an optimize...
In this work, an application of a design of experiments approach for the optimization of an isoniazi...
2021 Summer.Includes bibliographical references.Microfludic paper-based devices are fast becoming an...
A wide range of microfluidic paper-based analytical devices (μPADs) have been developed in the last ...
Paper-based microfluidic analytical devices (μPADs) are becoming valuable tools in analytical area d...
The development of a competitive immunoassay system for colorimetric detection on microfluidic paper...
The combination of a microfluidic paper-based analytical device (mu PAD) and digital image analysis ...
Paper-based microfluidic devices have been widely investigated in recent years. Among various detect...
This study describes the use of mass spectrometry imaging with matrix-assisted laser desorption/ioni...
© 2014 The Royal Society of Chemistry. In this paper the development of microfluidic paper-based ana...
An ongoing research collaboration focuses on developing Paper Analytical Devices (PADs) to test for ...
The deposition of chemical reagent inks on paper is a crucial step in the development and fabricatio...
Accurate diagnosis is the most important step in identifying and curing diseases. There are no accur...
An improved paper-based analytical device (PAD) using color screening to enhance device performance ...
The Use of Chemometrics for the Optimization of Experiments in Microfluidic Devices and Detection wi...
This manuscript reports on the application of chemometric methods for the development of an optimize...
In this work, an application of a design of experiments approach for the optimization of an isoniazi...
2021 Summer.Includes bibliographical references.Microfludic paper-based devices are fast becoming an...
A wide range of microfluidic paper-based analytical devices (μPADs) have been developed in the last ...
Paper-based microfluidic analytical devices (μPADs) are becoming valuable tools in analytical area d...
The development of a competitive immunoassay system for colorimetric detection on microfluidic paper...
The combination of a microfluidic paper-based analytical device (mu PAD) and digital image analysis ...
Paper-based microfluidic devices have been widely investigated in recent years. Among various detect...
This study describes the use of mass spectrometry imaging with matrix-assisted laser desorption/ioni...
© 2014 The Royal Society of Chemistry. In this paper the development of microfluidic paper-based ana...
An ongoing research collaboration focuses on developing Paper Analytical Devices (PADs) to test for ...
The deposition of chemical reagent inks on paper is a crucial step in the development and fabricatio...
Accurate diagnosis is the most important step in identifying and curing diseases. There are no accur...
An improved paper-based analytical device (PAD) using color screening to enhance device performance ...