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<meta:notes>Excitatory SA to PG synpase (copy of ORN->PG) adapted from ORN to PG sEPSPs in paper average of McQuiston and Katz, Murphy etal, Hayar et al 2004b, and average of bursty ET->PG and direct ON EPSPs</meta:notes>
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<status value="in_progress">
<meta:contributor>
<meta:name>Aditya Gilra</meta:name>
</meta:contributor>
</status>
<meta:notes> Dual exponential excitatory SA to PG synapse </meta:notes>
<meta:authorList>
<meta:modelAuthor>
<meta:name>Aditya Gilra</meta:name>
</meta:modelAuthor>
<meta:modelTranslator>
<meta:name>Aditya Gilra</meta:name>
<meta:institution>NCBS, India</meta:institution>
<meta:email>adityag@ncbs.res.in</meta:email>
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<meta:notes> time constants from Hayar et al, gmax is guess-averaged from all three. </meta:notes>
<meta:publication>
<meta:fullTitle>Abdallah Hayar et al., “External Tufted Cells: A Major Excitatory Element That Coordinates Glomerular Activity,” J. Neurosci. 24, no. 30 (July 28, 2004): 6676-6685.</meta:fullTitle>
</meta:publication>
<meta:publication>
<meta:fullTitle>A R McQuiston and L C Katz, “Electrophysiology of interneurons in the glomerular layer of the rat olfactory bulb,” Journal of Neurophysiology 86, no. 4 (October 2001): 1899-1907.</meta:fullTitle>
</meta:publication>
<meta:publication>
<meta:fullTitle>Gabe J Murphy, Daniel P Darcy, and Jeffry S Isaacson, “Intraglomerular inhibition: signaling mechanisms of an olfactory microcircuit,” Nat Neurosci 8, no. 3 (March 2005): 354-364.</meta:fullTitle>
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<doub_exp_syn max_conductance="0.5e-9" rise_time="5.5e-3" decay_time="5.5e-3" reversal_potential="0.0"/>
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