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

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repress each other. In this case, the system can reach both equilibruim points $(1,0)$ and $(0,1)$ - repression  
repress each other. In this case, the system can reach both equilibruim points $(1,0)$ and $(0,1)$ - repression  
of one population and activation of the other, Fig. 4. This is the condition we should find experimentally in order to make our system works properly.  
of one population and activation of the other, Fig. 4. This is the condition we should find experimentally in order to make our system works properly.  
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Its desired that without any stimulus, the system converges to the point (0,0). However, with a adequate stimulus the system should be able to converges
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Its desired that, without any stimulus, the system converges to the point (0,0) and stays at this point. However, with a suficient  stimulus the system should be able to converge
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to the point (0,1) or (1,0). This means that we want a system where initially all populations are repressed. However, if one of the them receives a stimulus
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to the point (0,1) or (1,0), depending on which population was stimulated.  
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the system should be able to move to a equilibruim point where the population that received the stimulus is ative and the other one is repressed.  
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Revision as of 01:43, 27 September 2012