(A) Surface map of the steady pressure (Pa) distributions inside the microfluidic device. (B) Surface map of the fluid velocity (μm s-1) and streamlines. (C) FITC-dextran was introduced through the media lines to demonstrate the direction of flow through the device (bottom to top and central chamber to outside chambers). The image was taken 30 minutes after introducing the dye. Scale bar = 200 μm.</p
(A) The design of the microfluidic device with the central vascular chamber (yellow) and adjacent st...
<p>(a) Schematic of channels in the microfluidic device. 650 µm deep connecting channels and 165 µm ...
<p>(3a) Schematic of the entire plate. The microfluidic module itself was 25 × 50 mm, which was exte...
<p>The blue, red and green indicators represented control group, EGF group, GM6001/EGF group respect...
We are working towards building a CAD tool (NetFlow) for microfluidic systems. To support the develo...
<p>a: Top view of the results of the simulation of half channel. Stream lines are represented in gre...
(A) Cross-sectional view illustrating concentration gradient formed by diffusion. (B) Illustration s...
<p>(A) Laminar flow device with ten individual inlets for different chemicals and two 4x4 mm chamber...
<p>(A) Image of the microfluidic device mainly composed of a double-layer chip and an injection pump...
<p>(A) Device setup. Four devices were patterned on a 1 mm thick agarose gel membrane, which was san...
<p>(A) Schematic illustration of the microfluidic device. A and B/C represent the inlets and outlets...
<p>(A) Diagram sketch of the PDMS chip. The horizontal cylinder channel between the two chambers is ...
<p>a) Cells in gel are loaded into the gel region via pipetting. The PDMS posts and surface tension ...
<p><b>(A)</b> Illustration of the microfluidic gradient generator with a pressure balance zone. Red ...
<p>a) Schematic of cell migration chamber. The microfluidic device consists of an array of microchan...
(A) The design of the microfluidic device with the central vascular chamber (yellow) and adjacent st...
<p>(a) Schematic of channels in the microfluidic device. 650 µm deep connecting channels and 165 µm ...
<p>(3a) Schematic of the entire plate. The microfluidic module itself was 25 × 50 mm, which was exte...
<p>The blue, red and green indicators represented control group, EGF group, GM6001/EGF group respect...
We are working towards building a CAD tool (NetFlow) for microfluidic systems. To support the develo...
<p>a: Top view of the results of the simulation of half channel. Stream lines are represented in gre...
(A) Cross-sectional view illustrating concentration gradient formed by diffusion. (B) Illustration s...
<p>(A) Laminar flow device with ten individual inlets for different chemicals and two 4x4 mm chamber...
<p>(A) Image of the microfluidic device mainly composed of a double-layer chip and an injection pump...
<p>(A) Device setup. Four devices were patterned on a 1 mm thick agarose gel membrane, which was san...
<p>(A) Schematic illustration of the microfluidic device. A and B/C represent the inlets and outlets...
<p>(A) Diagram sketch of the PDMS chip. The horizontal cylinder channel between the two chambers is ...
<p>a) Cells in gel are loaded into the gel region via pipetting. The PDMS posts and surface tension ...
<p><b>(A)</b> Illustration of the microfluidic gradient generator with a pressure balance zone. Red ...
<p>a) Schematic of cell migration chamber. The microfluidic device consists of an array of microchan...
(A) The design of the microfluidic device with the central vascular chamber (yellow) and adjacent st...
<p>(a) Schematic of channels in the microfluidic device. 650 µm deep connecting channels and 165 µm ...
<p>(3a) Schematic of the entire plate. The microfluidic module itself was 25 × 50 mm, which was exte...