We report for the first time the laser-printer-based fabrication of vapor- and pressure-resistant microfluidic single-use valves and their implementation on a centrifugal microfluidic "lab-on-a-disc platform". As an extension of this technology, we implemented long-term storage of liquids for up to one month with no signs of evaporation. This simple technology is compatible with a range of polymer microfabrication technologies and should facilitate the design and fabrication of fully integrated and automated lab-on-a-chip cartridges that require pressure-resistant valves or long-term reagent storage
This article introduces fully enclosed microfluidic paper-based analytical devices (microPADs) fabri...
Paper-based microfluidics is a rapidly progressing inter-disciplinary technology driven by the need ...
We report the design, fabrication, and characterization of practical m laser printer lithography. Th...
We report for the first time the laser-printer-based fabrication of vapor- and pressure-resistant mi...
We report the design, fabrication, and characterization of practical optofluidic valves fabricated u...
The success of lab-on-a-chip systems may depend on a low-cost device that incorporates on-chip stora...
This article introduces fully enclosed microfluidic paper-based analytical devices (microPADs) fabri...
Paper-based microfluidics is a rapidly progressing inter-disciplinary technology driven by the need ...
Microfluidics has enabled low volume biochemistry reactions to be carried out at the point-of-care. ...
In this work, inexpensive manufacturing of unibody transparent mesofluidic platforms for pressure-dr...
AbstractLab on Chip technologies have enabled the possibility of novel μTAS devices (micro Total Ana...
The demand for low-cost alternatives to conventional point-of-care (POC) diagnostic tools has led to...
In this work, inexpensive manufacturing of unibody transparent mesofluidic platforms for pressure-dr...
Microfluidic engineering technology has been widely used for implementing lab-on-chip (LOC) type poi...
Microfluidics allows for the miniaturization of laboratory processes onto a compact disc (CD). A mic...
This article introduces fully enclosed microfluidic paper-based analytical devices (microPADs) fabri...
Paper-based microfluidics is a rapidly progressing inter-disciplinary technology driven by the need ...
We report the design, fabrication, and characterization of practical m laser printer lithography. Th...
We report for the first time the laser-printer-based fabrication of vapor- and pressure-resistant mi...
We report the design, fabrication, and characterization of practical optofluidic valves fabricated u...
The success of lab-on-a-chip systems may depend on a low-cost device that incorporates on-chip stora...
This article introduces fully enclosed microfluidic paper-based analytical devices (microPADs) fabri...
Paper-based microfluidics is a rapidly progressing inter-disciplinary technology driven by the need ...
Microfluidics has enabled low volume biochemistry reactions to be carried out at the point-of-care. ...
In this work, inexpensive manufacturing of unibody transparent mesofluidic platforms for pressure-dr...
AbstractLab on Chip technologies have enabled the possibility of novel μTAS devices (micro Total Ana...
The demand for low-cost alternatives to conventional point-of-care (POC) diagnostic tools has led to...
In this work, inexpensive manufacturing of unibody transparent mesofluidic platforms for pressure-dr...
Microfluidic engineering technology has been widely used for implementing lab-on-chip (LOC) type poi...
Microfluidics allows for the miniaturization of laboratory processes onto a compact disc (CD). A mic...
This article introduces fully enclosed microfluidic paper-based analytical devices (microPADs) fabri...
Paper-based microfluidics is a rapidly progressing inter-disciplinary technology driven by the need ...
We report the design, fabrication, and characterization of practical m laser printer lithography. Th...