<?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>ordb.biotech.ttu.edu</location>
    <date>4/12/2026 7:07:14 AM</date>
    <query_method>GET</query_method>
    <query_parameter>o=7020</query_parameter>
  </source>
  <metadata type="partial" time="0.0156238000017765">
    <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="0.0312473999983922">
    <data_database db_id="d1">
      <data_class class_id="c18" version="5">
        <object id="o7020" name="Retina bipolar GLU cell" description="" uid="" version="7" version_date="2/20/2014 11:33:02 AM">
          <att_value att_id="a22" encoding="Base64" filename="retinal_bipolar2.gif" file_size="8455 Bytes" mime_type="image/gif" value_object_id="o7020" value="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" />
          <att_value att_id="a48" value="o285" value_object_name="Canonical form 2" />
          <att_value att_id="a81" value="P. Sterling, 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="148" />
        </object>
      </data_class>
    </data_database>
  </data>
</edsp>

