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Oculomotor Nucleus
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  • Published: 21 July 2008

Allen Brain Atlas Reports

Oculomotor Nucleus

  • Allen Institute for Brain Science,
  • Josh Burnell1,
  • Lydia Ng1 &
  • …
  • Angela Guillozet-Bongaarts1 

Nature Precedings (2008)Cite this article

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Abstract

This report contains a gene expression summary of the oculomotor nucleus, derived from the Allen Brain Atlas (ABA) in situ hybridization mouse data set. The structure's location and morphological characteristics in the mouse brain are described using the Nissl data found in the Allen Reference Atlas. Using an established algorithm, the expression values of the oculomotor nucleus were compared to the values of the macro/parent-structure, in this case the midbrain, for the purpose of extracting regionally selective gene expression data. The genes with the highest ranking selectivity ratios were manually curated and verified. 50 genes were then selected and compiled for expression characterization. The experimental data for each gene may be accessed via the links provided; additional data in the sagittal plane may also be accessed using the ABA. Correlations between gene expression in the oculomotor nucleus and the rest of the brain, across all genes in the coronal dataset (~4300 genes), were derived computationally. A gene ontology table (derived from DAVID Bioinformatics Resources 2007) is also included, highlighting possible functions of the 50 genes selected for this report.

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  1. Allen Institute for Brain Science https://www.nature.com/nature

    Josh Burnell, Lydia Ng & Angela Guillozet-Bongaarts

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  1. Josh Burnell
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  2. Lydia Ng
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  3. Angela Guillozet-Bongaarts
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Allen Institute for Brain Science

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Allen Institute for Brain Science., Burnell, J., Ng, L. et al. Oculomotor Nucleus. Nat Prec (2008). https://doi.org/10.1038/npre.2008.2094.1

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  • Received: 18 July 2008

  • Accepted: 21 July 2008

  • Published: 21 July 2008

  • DOI: https://doi.org/10.1038/npre.2008.2094.1

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Keywords

  • Oculomotor Nucleus
  • In-situ hybridization
  • Allen Institute for Brain Science
  • gene expression
  • Midbrain
  • Neuroanatomy
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