<?xml version="1.0" encoding="UTF-8"?>
<?xml-stylesheet type="text/xsl" href="https://www.nitrc.org/themes/nitrc3.0/css/rss.xsl.php?feed=https://www.nitrc.org/export/rss20_forum.php?forum_id=4224" ?>
<?xml-stylesheet type="text/css" href="https://www.nitrc.org/themes/nitrc3.0/css/rss.css" ?>
<rss version="2.0"> <channel>
  <title>NITRC News Group Forum: distributed-organization-of-a-brain-microcircuit-analyzed-by-3d-modeling</title>
  <link>http://www.nitrc.org/forum/forum.php?forum_id=4224</link>
  <description>&lt;img src=&quot;http://www.incf.org/newsroom/highlights/distributed-organization-of-a-brain-microcircuit-analyzed-by-3d-modeling/image&quot; alt=&quot;Distributed organization of a brain microcircuit analyzed by 3D modeling&quot; title=&quot;Distributed organization of a brain microcircuit analyzed by 3D modeling&quot; height=&quot;128&quot; width=&quot;128&quot; /&gt;&lt;p&gt;In Frontiers in Computational Neuroscience, members of the INCF DASH and PONS programs present &lt;span&gt;a full implementation of an olfactory bulb microcircuit using realistic three-dimensional (3D) inputs, cell morphologies, and network connectivity. The results provide new insights into the relations between the functional properties of individual cells and the networks in which they are embedded.&lt;/span&gt;&lt;/p&gt;</description>
  <language>en-us</language>
  <copyright>Copyright 2000-2026 NITRC OSI</copyright>
  <webMaster></webMaster>
  <lastBuildDate>Sat, 18 Apr 2026 23:00:19 GMT</lastBuildDate>
  <docs>http://blogs.law.harvard.edu/tech/rss</docs>
  <generator>NITRC RSS generator</generator>
 </channel>
</rss>
