Team:Wageningen UR/Project/Devices
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RubenvanHeck (Talk | contribs) m (→Custom fluidic device designed by Team Wageningen UR to measure oscillations) |
RubenvanHeck (Talk | contribs) m (→Custom fluidic device designed by Team Wageningen UR to measure oscillations) |
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'''Fig.1:''' ''Wireframe model of designed flow device.'' | '''Fig.1:''' ''Wireframe model of designed flow device.'' | ||
- | + | ===Bacterial growing platforms=== | |
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To induce and observe oscillatory behavior in a population of ‘‘E.coli’’ in the microdish nutrients should be readily available for the cells located in the wells. To achieve this, the design implements a second set of inflow (in green) and outflow(in pink) ports. These ports connect to the lower chamber (yellow) and are used to flow a fresh supply of medium through the lower chamber. When the lower chamber is filled with medium, the medium can diffuse through the pores in the aluminum oxide hereby constantly giving the cells access to fresh medium. these ports connect to a chamber(yellow) when filled with medium comes in contact with the aluminum oxide microdish(in black). Through the addition of these ports an continuous supply of fresh medium is supplied. | To induce and observe oscillatory behavior in a population of ‘‘E.coli’’ in the microdish nutrients should be readily available for the cells located in the wells. To achieve this, the design implements a second set of inflow (in green) and outflow(in pink) ports. These ports connect to the lower chamber (yellow) and are used to flow a fresh supply of medium through the lower chamber. When the lower chamber is filled with medium, the medium can diffuse through the pores in the aluminum oxide hereby constantly giving the cells access to fresh medium. these ports connect to a chamber(yellow) when filled with medium comes in contact with the aluminum oxide microdish(in black). Through the addition of these ports an continuous supply of fresh medium is supplied. | ||
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+ | ===General design considerations.=== | ||
Because we want to use the flow device in combination with fluorescence microscopy the distance between the objective and the sample is crucial. Therefore we choose for a top chamber depth of 1 mm because in combination with the deckled of 1 mm, this distance is short enough for the focusing depth of the 20 x objective. Furthermore this also reduces the volume of the chamber, reducing overhead liquid which could contain precious reactants ,such as acyl-homo-lactone. | Because we want to use the flow device in combination with fluorescence microscopy the distance between the objective and the sample is crucial. Therefore we choose for a top chamber depth of 1 mm because in combination with the deckled of 1 mm, this distance is short enough for the focusing depth of the 20 x objective. Furthermore this also reduces the volume of the chamber, reducing overhead liquid which could contain precious reactants ,such as acyl-homo-lactone. |
Revision as of 18:00, 20 September 2011