<?xml version="1.0" encoding="UTF-8"?>
<channelml xmlns="http://morphml.org/channelml/schema"
xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
xmlns:meta="http://morphml.org/metadata/schema"
xsi:schemaLocation="http://morphml.org/channelml/schema http://www.neuroml.org/NeuroMLValidator/NeuroMLFiles/Schemata/v1.8.1/Level2/ChannelML_v1.8.1.xsd"
units="SI Units">
<meta:notes>I-h channel for periglomerular cells from Cadetti and Belluzzi (2001)</meta:notes>
<channel_type name="Ih_cb">
<status value="in_progress">
<meta:contributor>
<meta:name>Aditya Gilra</meta:name>
</meta:contributor>
</status>
<meta:notes> hyperpolarization-activated (H-type) cation current</meta:notes>
<meta:authorList>
<meta:modelAuthor>
<meta:name>Cadetti L</meta:name>
</meta:modelAuthor>
<meta:modelAuthor>
<meta:name>Belluzzi O</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>
</meta:modelTranslator>
</meta:authorList>
<meta:publication>
<meta:fullTitle>Cadetti L, Belluzzi O (2001) Hyperpolarisation-activated current in glomerular cells of the rat olfactory bulb. Neuroreport 12:3117-20</meta:fullTitle>
<meta:pubmedRef>http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=11568648&dopt=Abstract</meta:pubmedRef>
</meta:publication>
<meta:neuronDBref>
<meta:modelName>Ih channel</meta:modelName>
<meta:uri>http://senselab.med.yale.edu/modeldb/ShowModel.asp?model=3665</meta:uri>
</meta:neuronDBref>
<current_voltage_relation cond_law="ohmic" ion="h" default_gmax="0.5" default_erev="-0.030">
<q10_settings q10_factor="4.5" experimental_temp="30.0"/>
<!--<offset value="0.010"/>-->
<gate name="l" instances="1">
<closed_state id="l0"/>
<open_state id="l"/>
<transition name="alpha" from="l0" to="l" expr_form="exponential" rate="1.0" scale="0.011764705882" midpoint="-0.065" />
<transition name="beta" from="l" to="l0" expr_form="exponential" rate="1.0" scale="0.023529411765" midpoint="-0.065" />
<!-- Order is important: first time_course, then steady_state-->
<time_course name="tau" from="l0" to="l" expr_form="generic" expr="beta/(0.85*(1+alpha))" />
<steady_state name="inf" from="l0" to="l" expr_form="sigmoid" rate="1.0" scale="0.010" midpoint="-0.080"/>
</gate>
</current_voltage_relation>
<impl_prefs>
<table_settings max_v="0.1" min_v="-0.1" table_divisions="200"/>
</impl_prefs>
</channel_type>
</channelml> |