<?xml version="1.0"?>
<edsp version="3.1" about_me="http://ycmi.med.yale.edu/EAVCR/EDSP" source="Olfactory Receptors Database">
  <source>
    <type>eav/cr</type>
    <name>Data Store:SenseLab</name>
    <location>itts023d.itts.ttu.edu</location>
    <date>4/26/2026 11:02:57 PM</date>
    <query_method>GET</query_method>
    <query_parameter>o=7021</query_parameter>
  </source>
  <metadata type="partial" time="0.0156280999945011">
    <datatypes>
      <datatype id="B" name="Boolean" xml_datatype="xs:boolean" />
      <datatype id="C" name="Object/Ref" xml_datatype="xs:long" />
      <datatype id="D" name="Datetime" xml_datatype="xs:dateTime" />
      <datatype id="F" name="Formula(only)" xml_datatype="xs:anyType" />
      <datatype id="H" name="Hierarchy(p)" xml_datatype="xs:long" />
      <datatype id="I" name="Integer" xml_datatype="xs:long" />
      <datatype id="M" name="Memo" xml_datatype="xs:string" />
      <datatype id="R" name="Real" xml_datatype="xs:double" />
      <datatype id="S" name="String" xml_datatype="xs:string" />
      <datatype id="V" name="Object/Value" xml_datatype="xs:long" />
      <datatype id="W" name="Object/Ref(MC)" xml_datatype="xs:long" />
      <datatype id="Y" name="Binary" xml_datatype="xs:base64Binary" />
    </datatypes>
    <metadata_ontology>
      <sem_type_atts>
        <sta id="s1" umls_tui="T001" name="Organism" />
      </sem_type_atts>
      <sem_rel_types>
        <srt id="s1" umls_tui="QB" name="Class qualifies Attribute" />
      </sem_rel_types>
      <sem_rel_att>
        <sra id="s1" umls_tui="T186" name="is a" />
        <sra id="s18" umls_tui="" name="is found in" />
      </sem_rel_att>
    </metadata_ontology>
    <database id="d1" name="neurondb" caption="NeuronDB" caption_long="Neuron Database" description="NeuronDB provides a dynamically searchable database of three types of neuronal properties: voltage gated conductances, neurotransmitter receptors, and neurotransmitter substances. It contains tools that provide for integration of these properties in a given type of neuron and comparison of properties across different types of neurons." main_class="18" version="7" version_date="3/3/2009 11:41:40 AM">
      <class id="c18" name="neuron" caption="Neuron" description="Neuronal cells" object_description_hide="true" type="E" is_concept="true" host_concepts="true" uid="sao1417703748" version="5" version_date="4/7/2008 10:47:32 AM">
        <att id="a22" dt_id="Y" sn="1" name="Picture" caption="Picture" description="" is_concept="true" host_concepts="false" uid="C0441469" srt_id="s" sra_id="s" version="1" version_date="4/2/2002 12:00:02 AM" />
        <att id="a48" dt_id="C" sn="2" name="Can_Form_type" caption="Canonical Form Type" description="      " ref_class="c21" ref_class_name="canonicalforms" mi="false" required="Yes" is_concept="true" host_concepts="false" srt_id="s" sra_id="s" version="2" version_date="3/31/2008 1:47:01 PM" />
        <att id="a81" dt_id="S" sn="3" name="Picture_from" caption="Picture from" description="" width="200" is_concept="true" host_concepts="false" srt_id="s" sra_id="s" version="3" version_date="2/19/2014 11:02:11 AM" />
        <att id="a111" dt_id="C" sn="4" name="organism" caption="Organism" description="Present in organims" ref_class="c37" ref_class_name="organism_group" mi="false" is_concept="false" host_concepts="true" uid="C0029235" srt_id="s" sra_id="s18" sta_ids="s1" version="2" version_date="4/11/2007 3:56:22 PM" />
        <att id="a142" dt_id="C" sn="5" name="neuron_category" caption="Neuron category" description="Role of a neuron in microcircuitry or network" ref_class="c43" ref_class_name="Neuron_category" mi="false" required="Yes" is_concept="false" host_concepts="true" srt_id="s" sra_id="s" version="2" version_date="4/2/2002 12:00:02 AM" />
        <att id="a624" dt_id="C" sn="6" name="neurontype" caption="Neuron type" description="" ref_class="c180" ref_class_name="neurontype" mi="false" is_concept="false" host_concepts="true" srt_id="s" sra_id="s" version="1" version_date="12/18/2015 11:06:29 AM" />
        <att id="a620" dt_id="I" sn="7" name="rotation" caption="cell rotation" description="cell rotation in default diagram" width="10" is_concept="false" host_concepts="false" srt_id="s" sra_id="s" version="2" version_date="12/18/2015 11:07:21 AM" />
        <att id="a618" dt_id="S" sn="7" name="coordinates_2d" caption="Coordinates(2D)" description="" width="40" is_concept="false" host_concepts="false" srt_id="s" sra_id="s" version="4" version_date="2/6/2019 11:05:14 AM" />
        <att id="a408" dt_id="M" sn="8" name="description" caption="Description" description="Extended description" is_concept="false" host_concepts="false" srt_id="s1" sra_id="s1" version="3" version_date="4/7/2008 10:51:18 AM" />
        <att id="a507" dt_id="S" sn="9" name="neuroelectro" caption="Electrophysiological properties" description="Electrophysiological properties from neuroElectro.org" width="60" is_concept="true" host_concepts="false" srt_id="s" sra_id="s" version="2" version_date="9/25/2013 1:53:02 PM" />
        <att id="a528" dt_id="S" sn="11" name="neurolex" caption="NeuroLex" description="Neurolex entry page" width="50" is_concept="true" host_concepts="false" srt_id="s" sra_id="s" version="2" version_date="6/23/2014 10:34:26 AM" />
        <att id="a672" dt_id="S" sn="12" name="layer" caption="Layer" description="" width="25" is_concept="false" host_concepts="false" srt_id="s" sra_id="s" version="1" version_date="1/26/2018 12:09:42 PM" />
        <att id="a673" dt_id="C" sn="13" name="hodology" caption="Hodology" description="Neuron connectivity information. Tells where the neuron connects withing the area it is on." ref_class="c192" ref_class_name="hodoloy" mi="false" is_concept="false" host_concepts="true" srt_id="s" sra_id="s" version="3" version_date="2/8/2018 11:28:03 AM" />
        <att id="a688" dt_id="C" sn="14" name="molecularmarker" caption="Molecular Marker" description="Molecular markers can be sequenced, fluorescently labeled with viruses, or stained with antibodies (immunohistochemistry) to identify cell types." ref_class="c185" ref_class_name="molecularmarkers" mi="true" is_concept="false" host_concepts="true" srt_id="s" sra_id="s" version="1" version_date="6/13/2018 2:53:21 PM" />
      </class>
    </database>
  </metadata>
  <data time="0.0156218000047375">
    <data_database db_id="d1">
      <data_class class_id="c18" version="5">
        <object id="o7021" name="Neostriatum interneuron ACh cell" description="" uid="" version="12" version_date="6/19/2019 12:25:00 PM">
          <att_value att_id="a22" encoding="Base64" filename="Ach_interneuron.gif" file_size="8728 Bytes" mime_type="image/gif" value_object_id="o7021" value="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" />
          <att_value att_id="a48" value="o285" value_object_name="Canonical form 2" />
          <att_value att_id="a81" value="Wilson, CJ, in Synaptic Organization of the Brain, 4th ed. (Shepherd, GM, ed.) New York: Oxford University Press 1998." />
          <att_value att_id="a111" value="o3455" value_object_name="Vertebrates" />
          <att_value att_id="a142" value="o3827" value_object_name="interneuron" />
          <att_value att_id="a507" value="115" />
        </object>
      </data_class>
    </data_database>
  </data>
</edsp>

