The miniaturization of integrated fluidic processors affords extensive benefits for chemical and biological fields, yet traditional, monolithic methods of microfabrication present numerous obstacles for the scaling of fluidic operators. Recently, researchers have investigated the use of additive manufacturing or "three-dimensional (3D) printing" technologies - predominantly stereolithography - as a promising alternative for the construction of submillimeter-scale fluidic components. One challenge, however, is that current stereolithography methods lack the ability to simultaneously print sacrificial support materials, which limits the geometric versatility of such approaches. In this work, we investigate the use of multijet modelling (alter...
Miniaturization and integration of assays, chemical synthesis, and cell culture models onto microflu...
Three dimensional (3D) printing is actively sought after in recent years as a promising novel techno...
The combination of microfluidics and photo-polymerization techniques such as stereolithography (SLA)...
Microfluidics, the science and engineering of fluid at small scales, affords numerous benefits for a...
Additive manufacturing has been a cornerstone of the product development pipeline for decades, playi...
<div><p>Additive manufacturing has been a cornerstone of the product development pipeline for decade...
Three-dimensional (3D) printing has emerged as a potential revolutionary technology for the fabricat...
The emergence of three dimensional (3D) printing has excited euphoric responses from researchers and...
A high-pressure microfluidic device for 3D extrusion printing of viscoelastic ink was developed. T...
3D printing has emerged as a valuable approach for the fabrication of fluidic devices and may replac...
The technology of “Lab-on-a-Chip” allows the synthesis and analysis of chemicals and biological subs...
Three-dimensional (3D) printing is becoming a new gold standard for the fabrication of microfluidic ...
Fabrication of microfluidic devices for use in biomedical research using three-dimensional (3D) prin...
This paper describes a simple method to apply 3D printing to fabricate microfluidic devices integrat...
In the last few years, 3D printing has emerged as a promising alternative for the fabrication of mic...
Miniaturization and integration of assays, chemical synthesis, and cell culture models onto microflu...
Three dimensional (3D) printing is actively sought after in recent years as a promising novel techno...
The combination of microfluidics and photo-polymerization techniques such as stereolithography (SLA)...
Microfluidics, the science and engineering of fluid at small scales, affords numerous benefits for a...
Additive manufacturing has been a cornerstone of the product development pipeline for decades, playi...
<div><p>Additive manufacturing has been a cornerstone of the product development pipeline for decade...
Three-dimensional (3D) printing has emerged as a potential revolutionary technology for the fabricat...
The emergence of three dimensional (3D) printing has excited euphoric responses from researchers and...
A high-pressure microfluidic device for 3D extrusion printing of viscoelastic ink was developed. T...
3D printing has emerged as a valuable approach for the fabrication of fluidic devices and may replac...
The technology of “Lab-on-a-Chip” allows the synthesis and analysis of chemicals and biological subs...
Three-dimensional (3D) printing is becoming a new gold standard for the fabrication of microfluidic ...
Fabrication of microfluidic devices for use in biomedical research using three-dimensional (3D) prin...
This paper describes a simple method to apply 3D printing to fabricate microfluidic devices integrat...
In the last few years, 3D printing has emerged as a promising alternative for the fabrication of mic...
Miniaturization and integration of assays, chemical synthesis, and cell culture models onto microflu...
Three dimensional (3D) printing is actively sought after in recent years as a promising novel techno...
The combination of microfluidics and photo-polymerization techniques such as stereolithography (SLA)...