Team:USP-UNESP-Brazil/Associative Memory/Background

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(Biological Mechanism)
(Biological Mechanism)
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{{:Team:USP-UNESP-Brazil/Templates/RImage | image=Figura0020.jpg | caption=Fig 1. Comparison between a biological neural network and "bacterial neural network" | size=600px}}
{{:Team:USP-UNESP-Brazil/Templates/RImage | image=Figura0020.jpg | caption=Fig 1. Comparison between a biological neural network and "bacterial neural network" | size=600px}}
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Then, to solve the problems of the visualization of the signals’ activation, we planned the construction of a device to make 9 E.coli populations to communicate with each other but still keep their position in space. As an improvement to the example in figure 1, the device enables the communication not only of neighbors but also of all the populations, inhibiting or activating them according to the memory previously inserted in the network. This way, comparing to the communication between neighbors and of the whole system itself, generates a bigger resolution of the output in response to a similar input, once each position has better information about the pattern of activity of all the other positions. Figure 4 shows a construction of the system that can enable an efficient communication between the populations of different positions of the network, even if it is physically separating them.
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In order to be able to measure if one population is activated we planned the construction of a device to make 9 E.coli populations to communicate with each other keeping a position in space. This device enables the communication not only of neighbors but also of all the populations. Figure 2 shows a construction of the system that can enable an efficient communication between the populations of different positions of the network, even if it is physically separating them.
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[[File:Physicalsystemforbacterialnetwork.png|center|500px|caption|]]
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[[File:Physicalsystemforbacterialnetwork.png|center|500px|caption=Figure 2|]]
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The device can be easily constructed using a plate of 96 wells with membranes attached to the bottom. The membranes will allow the diffusion of the quorum sensing substances and prevent the flux of bacterial populations between the wells; avoiding, them the mixture of the activation signals (outputs).
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The device can be easily constructed using a plate of 96 wells with membranes attached to the bottom. The membranes allow the diffusion of the quorum sensing substances and prevent the flux of bacterial populations between the wells.
====Genetic Construction====
====Genetic Construction====

Revision as of 13:31, 26 September 2012