Microfluidic organ-on-a-chip (OoC) technology has enabled studies on dynamic physiological conditions as well as being deployed in drug testing applications. A microfluidic pump is an essential component to perform perfusion cell culture in OoC devices. However, it is challenging to have a single pump that can fulfil both the customization function needed to mimic a myriad of physiological flow rates and profiles found in vivo and multiplexing requirements (i.e., low cost, small footprint) for drug testing operations. The advent of 3D printing technology and open-source programmable electronic controllers presents an opportunity to democratize the fabrication of mini-peristaltic pumps suitable for microfluidic applications at a fraction of ...
Organ-on-chip (OoC) devices are increasingly used to mimic the tissue microenvironment of cells in i...
Low flow rate micropumps play an increasingly important role in drug therapy research. Infusions to ...
Microfluidics is a field that provides tools and concepts for elaborating complex lab-on-a-chip devi...
Microfluidic organ-on-a-chip (OoC) technology has enabled studies on dynamic physiological condition...
Commercially available peristaltic pumps for microfluidics are usually bulky, expensive, and not cus...
Commercially available pumps designed for microfluidics are usually bulky, expensive, and not custom...
This paper presents design, implementation, and evaluation of a 3D printed miniature peristaltic pum...
We present a perfusion culture system with miniature bioreactors and peristaltic pumps. The bioreact...
In the last few years organ-on-chip (OoC) has been emerging as a new method for more reliable resear...
The advent of 3D printing technologies promises to make microfluidic organ-on-chip technologies more...
Lab-on-a-chip technology is promising for the miniaturization of chemistry, biochemistry, and/or bio...
With the rise of research utilizing microphysiological systems (MPSs), the need for tools that enabl...
Microfluidic devices providing an accurate delivery of fluids at required rates are of considerable ...
The fabrication of microfluidic chips can be simplified and accelerated by three-dimensional (3D) pr...
The design and production of sequencing and driver circuits, to operate a novel peristaltic micropum...
Organ-on-chip (OoC) devices are increasingly used to mimic the tissue microenvironment of cells in i...
Low flow rate micropumps play an increasingly important role in drug therapy research. Infusions to ...
Microfluidics is a field that provides tools and concepts for elaborating complex lab-on-a-chip devi...
Microfluidic organ-on-a-chip (OoC) technology has enabled studies on dynamic physiological condition...
Commercially available peristaltic pumps for microfluidics are usually bulky, expensive, and not cus...
Commercially available pumps designed for microfluidics are usually bulky, expensive, and not custom...
This paper presents design, implementation, and evaluation of a 3D printed miniature peristaltic pum...
We present a perfusion culture system with miniature bioreactors and peristaltic pumps. The bioreact...
In the last few years organ-on-chip (OoC) has been emerging as a new method for more reliable resear...
The advent of 3D printing technologies promises to make microfluidic organ-on-chip technologies more...
Lab-on-a-chip technology is promising for the miniaturization of chemistry, biochemistry, and/or bio...
With the rise of research utilizing microphysiological systems (MPSs), the need for tools that enabl...
Microfluidic devices providing an accurate delivery of fluids at required rates are of considerable ...
The fabrication of microfluidic chips can be simplified and accelerated by three-dimensional (3D) pr...
The design and production of sequencing and driver circuits, to operate a novel peristaltic micropum...
Organ-on-chip (OoC) devices are increasingly used to mimic the tissue microenvironment of cells in i...
Low flow rate micropumps play an increasingly important role in drug therapy research. Infusions to ...
Microfluidics is a field that provides tools and concepts for elaborating complex lab-on-a-chip devi...