Cell and neuron densities in the primary motor cortex of primates
Cell and neuron densities vary across the cortical sheet in a predictable manner across different primate species (Collins et al., 2010b). Primary motor cortex, M1, is characterized by lower neuron densities relative to other cortical areas. M1 contains a motor representation map of contralateral bo...
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Published in | Frontiers in neural circuits Vol. 7; p. 30 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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2013
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Abstract | Cell and neuron densities vary across the cortical sheet in a predictable manner across different primate species (Collins et al., 2010b). Primary motor cortex, M1, is characterized by lower neuron densities relative to other cortical areas. M1 contains a motor representation map of contralateral body parts from tail to tongue in a mediolateral sequence. Different functional movement representations within M1 likely require specialized microcircuitry for control of different body parts, and these differences in circuitry may be reflected by variation in cell and neuron densities. Here we determined cell and neuron densities for multiple sub-regions of M1 in six primate species, using the semi-automated flow fractionator method. The results verify previous reports of lower overall neuron densities in M1 compared to other parts of cortex in the six primate species examined. The most lateral regions of M1 that correspond to face and hand movement representations, are more neuron dense relative to medial locations in M1, which suggests differences in cortical circuitry within movement zones. |
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AbstractList | Cell and neuron densities vary across the cortical sheet in a predictable manner across different primate species (Collins et al.,
2010b
). Primary motor cortex, M1, is characterized by lower neuron densities relative to other cortical areas. M1 contains a motor representation map of contralateral body parts from tail to tongue in a mediolateral sequence. Different functional movement representations within M1 likely require specialized microcircuitry for control of different body parts, and these differences in circuitry may be reflected by variation in cell and neuron densities. Here we determined cell and neuron densities for multiple sub-regions of M1 in six primate species, using the semi-automated flow fractionator method. The results verify previous reports of lower overall neuron densities in M1 compared to other parts of cortex in the six primate species examined. The most lateral regions of M1 that correspond to face and hand movement representations, are more neuron dense relative to medial locations in M1, which suggests differences in cortical circuitry within movement zones. Cell and neuron densities vary across the cortical sheet in a predictable manner across different primate species (Collins et al., 2010b). Primary motor cortex, M1, is characterized by lower neuron densities relative to other cortical areas. M1 contains a motor representation map of contralateral body parts from tail to tongue in a mediolateral sequence. Different functional movement representations within M1 likely require specialized microcircuitry for control of different body parts, and these differences in circuitry may be reflected by variation in cell and neuron densities. Here we determined cell and neuron densities for multiple sub-regions of M1 in six primate species, using the semi-automated flow fractionator method. The results verify previous reports of lower overall neuron densities in M1 compared to other parts of cortex in the six primate species examined. The most lateral regions of M1 that correspond to face and hand movement representations, are more neuron dense relative to medial locations in M1, which suggests differences in cortical circuitry within movement zones. |
Author | Kaas, Jon H Collins, Christine E Young, Nicole A |
AuthorAffiliation | Department of Psychology, Vanderbilt University Nashville, TN, USA |
AuthorAffiliation_xml | – name: Department of Psychology, Vanderbilt University Nashville, TN, USA |
Author_xml | – sequence: 1 givenname: Nicole A surname: Young fullname: Young, Nicole A organization: Department of Psychology, Vanderbilt University Nashville, TN, USA – sequence: 2 givenname: Christine E surname: Collins fullname: Collins, Christine E – sequence: 3 givenname: Jon H surname: Kaas fullname: Kaas, Jon H |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/23450743$$D View this record in MEDLINE/PubMed |
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ContentType | Journal Article |
Copyright | 2013. This work is licensed under http://creativecommons.org/licenses/by/3.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. Copyright © 2013 Young, Collins and Kaas. 2013 |
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Snippet | Cell and neuron densities vary across the cortical sheet in a predictable manner across different primate species (Collins et al., 2010b). Primary motor... Cell and neuron densities vary across the cortical sheet in a predictable manner across different primate species (Collins et al., 2010b ). Primary motor... |
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SubjectTerms | Animals Brain research Cell Count - methods Cortex (motor) Dissection Electric Stimulation - methods flow fractionator Galago isotrophic fractionator isotropic fractionator Macaca nemestrina Monkeys & apes Motor Cortex - cytology Motor Cortex - physiology Movement neuron distribution Neurons Neurons - physiology Neuroscience Pan troglodytes Papio cynocephalus Papio hamadryas Platyrrhini Primates Saimiri Species Species Specificity Strepsirhini |
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Title | Cell and neuron densities in the primary motor cortex of primates |
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