The field of human cell research is rapidly changing due to the introduction of microphysiological systems, which commonly feature two stacked microchannels separated by a porous membrane for in vitro barrier modeling. An essential component to adequately representing a subset of human organ or tissue functions in these microfluidic systems is the concentration distribution of the biospecies involved. In particular, when different cell types are cultured, a delicate balance between media mixing and cellular signaling is required for long-term maintenance of the cellular co-culture. In this work, we experimentally measured the effects of various control parameters on the transient and steady average molecular concentration at the bilayer dev...
Graduation date: 2010Micro energy and chemical systems (MECS) are microfluidic systems where energy ...
Microfluidic devices could find applications in many areas, such as BioMEMs, miniature fuel cells an...
For the informed design of microfluidic devices, it is important to understand transport phenomena a...
Drug development has become bottlenecked over the past several decades by rapidly increasing costs i...
Biofilm growth (fouling) in microdevices is a critical concern in several industrial, engineering an...
Thesis (Ph.D.)--University of Washington, 2013The sensing of chemical gradients plays an important r...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Page 126...
Recently developed perfusion micro-bioreactors offer the promise of more physiologic in vitro system...
Transport of three different molecules across a porous membrane, with and without a confluent A549 c...
Organs-on-chips composed of a porous membrane-separated, double-layered channels are used widely in ...
A simplified analysis is carried out to derive the analytical solution of the mass transfer equation...
Following the rapid growth of Organ-on-a-Chip (OoaC) technology, porous membranes have become essent...
For better translation from basic science to everyday clinical practice, biomedical research must at...
© Controlled Release Society 2017. Micro and nanotechnology can potentially revolutionize drug deliv...
The dynamic cell culture process has been widely used in tissue engineering. The success of cell cul...
Graduation date: 2010Micro energy and chemical systems (MECS) are microfluidic systems where energy ...
Microfluidic devices could find applications in many areas, such as BioMEMs, miniature fuel cells an...
For the informed design of microfluidic devices, it is important to understand transport phenomena a...
Drug development has become bottlenecked over the past several decades by rapidly increasing costs i...
Biofilm growth (fouling) in microdevices is a critical concern in several industrial, engineering an...
Thesis (Ph.D.)--University of Washington, 2013The sensing of chemical gradients plays an important r...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Page 126...
Recently developed perfusion micro-bioreactors offer the promise of more physiologic in vitro system...
Transport of three different molecules across a porous membrane, with and without a confluent A549 c...
Organs-on-chips composed of a porous membrane-separated, double-layered channels are used widely in ...
A simplified analysis is carried out to derive the analytical solution of the mass transfer equation...
Following the rapid growth of Organ-on-a-Chip (OoaC) technology, porous membranes have become essent...
For better translation from basic science to everyday clinical practice, biomedical research must at...
© Controlled Release Society 2017. Micro and nanotechnology can potentially revolutionize drug deliv...
The dynamic cell culture process has been widely used in tissue engineering. The success of cell cul...
Graduation date: 2010Micro energy and chemical systems (MECS) are microfluidic systems where energy ...
Microfluidic devices could find applications in many areas, such as BioMEMs, miniature fuel cells an...
For the informed design of microfluidic devices, it is important to understand transport phenomena a...