The employment of single-use, disposable medical equipment has increased the amount of medical waste produced and the advent of point-of-care diagnostics in lab-on-chip format is likely to add further volume. Current materials used for the manufacture of these devices are derived from petroleum sources and are, therefore, unsustainable. In addition, disposal of these plastics necessitates combustion to reduce infection risk, which has, depending on material composition, an undesirable environmental impact. To address these issues, we have developed a general approach for the rapid prototyping of single-use point-of-care cartridges prepared from poly(lactic acid), a sustainable material which can be milled and laser-cut as well as molded for...
International audienceAlthough bioabsorbable polymers have garnered increasing attention because of ...
A variety of substrates have been used for fabrication of microchips for DNA extraction, PCR amplifi...
The development of organ-on-chip and biological scaffolds is currently requiring simpler methods for...
The employment of single-use, disposable medical equipment has increased the amount of medical waste...
The employment of single-use, disposable medical equipment has increased the amount of medical waste...
Laser patterning on polymeric materials is considered a green and rapid manufacturing process with l...
This paper reviews applications of laser-based techniques to the fabrication of microfluidic devices...
Biodegradable polymeric materials have had a significant impact on medical technology, greatly enhan...
This paper reviews applications of laser-based techniques to the fabrication of microfluidic devices...
In the last decade, the microfluidic community has witnessed an evolution in fabrication methodologi...
Poster presented at the 38th International Conference of the Polymer Processing Society hosted by EM...
This paper reports novel ways to bond bio-based polylactic acid (PLA) substrates for the production ...
This paper describes a novel technique for the fabrication of a multianalyte protein microassay on t...
We report on the use of laser direct-write techniques for the fabrication of point-of-care paper-bas...
We report a fast and simple prototyping method to fabricate polymer-based microfluidic chips using D...
International audienceAlthough bioabsorbable polymers have garnered increasing attention because of ...
A variety of substrates have been used for fabrication of microchips for DNA extraction, PCR amplifi...
The development of organ-on-chip and biological scaffolds is currently requiring simpler methods for...
The employment of single-use, disposable medical equipment has increased the amount of medical waste...
The employment of single-use, disposable medical equipment has increased the amount of medical waste...
Laser patterning on polymeric materials is considered a green and rapid manufacturing process with l...
This paper reviews applications of laser-based techniques to the fabrication of microfluidic devices...
Biodegradable polymeric materials have had a significant impact on medical technology, greatly enhan...
This paper reviews applications of laser-based techniques to the fabrication of microfluidic devices...
In the last decade, the microfluidic community has witnessed an evolution in fabrication methodologi...
Poster presented at the 38th International Conference of the Polymer Processing Society hosted by EM...
This paper reports novel ways to bond bio-based polylactic acid (PLA) substrates for the production ...
This paper describes a novel technique for the fabrication of a multianalyte protein microassay on t...
We report on the use of laser direct-write techniques for the fabrication of point-of-care paper-bas...
We report a fast and simple prototyping method to fabricate polymer-based microfluidic chips using D...
International audienceAlthough bioabsorbable polymers have garnered increasing attention because of ...
A variety of substrates have been used for fabrication of microchips for DNA extraction, PCR amplifi...
The development of organ-on-chip and biological scaffolds is currently requiring simpler methods for...