Through the development of analytical techniques, microscaled devices have displayed attractive advantages, including ultrasensitive detection and analysis, cost-effectiveness, portability, process integrity, multi-process functionality, and in-situ analysis. In the last decade, a new generation of analytical devices has emerged based on the cellulose materials – so-called microfluidic paper-based analytical devices (µPADs) – a field that will change the face of the diagnosis of different diseases and sensing of a wide range of biological/chemical/biochemical phenomena. The main aim of the current editorial is to highlight the importance of the µPADs in the research and development of diagnostic devices and pharmaceuticals
textIn this dissertation, three different microfluidic devices with bioanalytical applications are p...
This chapter will provide an overview of existing diagnostic devices made primarily out of paper and...
Chemical and biological sensing are crucial tools in science and technology. Plasmonic nanoparticles...
Microfluidic paper analytical devices (µPADs) are small, paper-based matrices similar to Lab-on-a-Ch...
The research reported in this thesis focuses on the development of a new class of microfluidic sensi...
Microfluidic paper-based analytical devices (microPADs) began as a simple idea with an ambitious goa...
Paper-based analytical devices (PADs), including lateral flow assays (LFAs), dipstick assays and mic...
Paper-based sensors and assays have been highly attractive for numerous biological applications, inc...
Paper has become increasingly recognized as a very interesting substrate for the construction of mic...
Using pentafluoroethane (PFE) and O2 as precursor gases, plasma (glow discharge) processes were deve...
Paper diagnostics are devices made of paper and cellulosic materials to recognize and quantify biomo...
In vitro diagnosis (IVD) has become a hot topic in laboratory research and achievement transformatio...
Paper is a common material that is promising for constructing microfluidic chips (lab-on-a-paper) fo...
Abstract Microfluidic paper-based analytical devices and micro total analysis systems are relatively...
Cancer is a major cause of mortality and morbidity worldwide. Detection and quantification of cancer...
textIn this dissertation, three different microfluidic devices with bioanalytical applications are p...
This chapter will provide an overview of existing diagnostic devices made primarily out of paper and...
Chemical and biological sensing are crucial tools in science and technology. Plasmonic nanoparticles...
Microfluidic paper analytical devices (µPADs) are small, paper-based matrices similar to Lab-on-a-Ch...
The research reported in this thesis focuses on the development of a new class of microfluidic sensi...
Microfluidic paper-based analytical devices (microPADs) began as a simple idea with an ambitious goa...
Paper-based analytical devices (PADs), including lateral flow assays (LFAs), dipstick assays and mic...
Paper-based sensors and assays have been highly attractive for numerous biological applications, inc...
Paper has become increasingly recognized as a very interesting substrate for the construction of mic...
Using pentafluoroethane (PFE) and O2 as precursor gases, plasma (glow discharge) processes were deve...
Paper diagnostics are devices made of paper and cellulosic materials to recognize and quantify biomo...
In vitro diagnosis (IVD) has become a hot topic in laboratory research and achievement transformatio...
Paper is a common material that is promising for constructing microfluidic chips (lab-on-a-paper) fo...
Abstract Microfluidic paper-based analytical devices and micro total analysis systems are relatively...
Cancer is a major cause of mortality and morbidity worldwide. Detection and quantification of cancer...
textIn this dissertation, three different microfluidic devices with bioanalytical applications are p...
This chapter will provide an overview of existing diagnostic devices made primarily out of paper and...
Chemical and biological sensing are crucial tools in science and technology. Plasmonic nanoparticles...