A compact microfluidic device with 96 microchambers allocated within four circular units was designed and examined for cell distribution. In each unit, cells were distributed to the surrounding chambers radially from the center. The circular arrangement of the chambers makes the design simple and compact. A controllable and quantitative cell distribution is achievable in this device. This design is significant to the microfluidic applications where controllable distribution of cells in multipule microchambers is demanded.<br /
“What I want to talk about is the problem of manipulating and controlling things on a small scale.”-...
This report describes a high throughput microfluidic method to control cell placement in two-dimensi...
Microfluidic devices for cell sorting or cell fractionation are disclosed. A microfluidic device can...
A compact microfluidic device with 96 microchambers allocated within four circular units was designe...
The uniform dispersion of cells in a microchamber is important to reproduce results in cellular rese...
<p>(A) The size distribution, which was measured for cells in suspension, was similar for pluripoten...
<p>Left, top: The cell culture is performed under sterile conditions. The flow is established using ...
<p>(A) Layout of the integrated microfluidic device mainly composed of an upstream CGG and a downstr...
Microfluidics is a rapidly growing field of biomedical engineering with numerous applications such a...
The advent of microfluidics has enabled thorough control of cell manipulation experiments in so call...
The primary objective of this work is to show simulation outputs from the developed model of cell fl...
Traditionally, in vitro investigations on biology and physiology of cells rely on averaging the resp...
In the last two decades many microfluidic devices have been developed in order to provide better and...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
University of Minnesota Ph.D. dissertation. October 2009. Major: Electrical Engineering. Advisor: Eu...
“What I want to talk about is the problem of manipulating and controlling things on a small scale.”-...
This report describes a high throughput microfluidic method to control cell placement in two-dimensi...
Microfluidic devices for cell sorting or cell fractionation are disclosed. A microfluidic device can...
A compact microfluidic device with 96 microchambers allocated within four circular units was designe...
The uniform dispersion of cells in a microchamber is important to reproduce results in cellular rese...
<p>(A) The size distribution, which was measured for cells in suspension, was similar for pluripoten...
<p>Left, top: The cell culture is performed under sterile conditions. The flow is established using ...
<p>(A) Layout of the integrated microfluidic device mainly composed of an upstream CGG and a downstr...
Microfluidics is a rapidly growing field of biomedical engineering with numerous applications such a...
The advent of microfluidics has enabled thorough control of cell manipulation experiments in so call...
The primary objective of this work is to show simulation outputs from the developed model of cell fl...
Traditionally, in vitro investigations on biology and physiology of cells rely on averaging the resp...
In the last two decades many microfluidic devices have been developed in order to provide better and...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
University of Minnesota Ph.D. dissertation. October 2009. Major: Electrical Engineering. Advisor: Eu...
“What I want to talk about is the problem of manipulating and controlling things on a small scale.”-...
This report describes a high throughput microfluidic method to control cell placement in two-dimensi...
Microfluidic devices for cell sorting or cell fractionation are disclosed. A microfluidic device can...