Multimaterial 3D printing provides a unique capability for the creation of highly complex integrated devices where complementary functionality is realized using differences in material properties. Using a single and automated print process, microfluidic devices were fabricated containing (i) an optically transparent structure for fluorescence detection, (ii) electrodes for electrokinetic transport, (iii) a primary membrane to remove particulates and macromolecules including proteins, and (iv) a secondary membrane to concentrate small molecule targets. The device was used for the simultaneous extraction and concentration of small molecule pharmaceuticals from urine, which was followed by an on-chip electrophoretic separation of the concentra...
While 3D printing technologies first appeared in the 1980s, prohibitive costs, limited materials, an...
3D printing is an emerging enabling technology that can facilitate the production of complex 3D stru...
The microfluidic enabled the integration of engineered miniaturized tissue models for drug screening...
Multimaterial 3D printing provides a unique capability for the creation of highly complex integrated...
© 17CBMS-0001. Multimaterial 3D printing was used to create an integrated microfluidic device contai...
The fabrication of microfluidic chips can be simplified and accelerated by three-dimensional (3D) pr...
One of the largest impediments in the development of microfluidic-based smart sensing systems is the...
In the past few decades, significant advancement has been made towards the development of automated ...
Lab-on-chip systems, also known as micro total analytical systems (μTASs), were introduced in late 8...
This research paper presents an inventive technique to swiftly create microfluidic channels on disti...
3D printing has recently emerged as an intriguing method for producing microfluidic devices due to i...
In this work, inexpensive manufacturing of unibody transparent mesofluidic platforms for pressure-dr...
Multiplexed analysis of biochemical analytes such as proteins, enzymes, and immune products using a ...
In this work, inexpensive manufacturing of unibody transparent mesofluidic platforms for pressure-dr...
While 3D printing technologies first appeared in the 1980s, prohibitive costs, limited materials, an...
While 3D printing technologies first appeared in the 1980s, prohibitive costs, limited materials, an...
3D printing is an emerging enabling technology that can facilitate the production of complex 3D stru...
The microfluidic enabled the integration of engineered miniaturized tissue models for drug screening...
Multimaterial 3D printing provides a unique capability for the creation of highly complex integrated...
© 17CBMS-0001. Multimaterial 3D printing was used to create an integrated microfluidic device contai...
The fabrication of microfluidic chips can be simplified and accelerated by three-dimensional (3D) pr...
One of the largest impediments in the development of microfluidic-based smart sensing systems is the...
In the past few decades, significant advancement has been made towards the development of automated ...
Lab-on-chip systems, also known as micro total analytical systems (μTASs), were introduced in late 8...
This research paper presents an inventive technique to swiftly create microfluidic channels on disti...
3D printing has recently emerged as an intriguing method for producing microfluidic devices due to i...
In this work, inexpensive manufacturing of unibody transparent mesofluidic platforms for pressure-dr...
Multiplexed analysis of biochemical analytes such as proteins, enzymes, and immune products using a ...
In this work, inexpensive manufacturing of unibody transparent mesofluidic platforms for pressure-dr...
While 3D printing technologies first appeared in the 1980s, prohibitive costs, limited materials, an...
While 3D printing technologies first appeared in the 1980s, prohibitive costs, limited materials, an...
3D printing is an emerging enabling technology that can facilitate the production of complex 3D stru...
The microfluidic enabled the integration of engineered miniaturized tissue models for drug screening...