Synaptic organization of striate cortex projections in the tree shrew: A comparison of the claustrum and dorsal thalamus
© 2016 Wiley Periodicals, Inc. The tree shrew (Tupaia belangeri) striate cortex is reciprocally connected with the dorsal lateral geniculate nucleus (dLGN), the ventral pulvinar nucleus (Pv), and the claustrum. In the Pv or the dLGN, striate cortex projections are thought to either strongly “drive”,...
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th-cmuir.6653943832-471862018-04-25T07:25:30Z Synaptic organization of striate cortex projections in the tree shrew: A comparison of the claustrum and dorsal thalamus Jonathan D. Day-Brown Arkadiusz S. Slusarczyk Na Zhou Ranida Quiggins Heywood M. Petry Martha E. Bickford © 2016 Wiley Periodicals, Inc. The tree shrew (Tupaia belangeri) striate cortex is reciprocally connected with the dorsal lateral geniculate nucleus (dLGN), the ventral pulvinar nucleus (Pv), and the claustrum. In the Pv or the dLGN, striate cortex projections are thought to either strongly “drive”, or more subtly “modulate” activity patterns respectively. To provide clues to the function of the claustrum, we compare the synaptic arrangements of striate cortex projections to the dLGN, Pv, and claustrum, using anterograde tracing and electron microscopy. Tissue was additionally stained with antibodies against γ-aminobutyric acid (GABA) to identify GABAergic interneurons and non-GABAergic projection cells. The striate cortex terminals were largest in the Pv (0.94 ± 0.08 μm 2 ), intermediate in the claustrum (0.34 ± 0.02 μm 2 ), and smallest in the dLGN (0.24 ± 0.01 μm 2 ). Contacts on interneurons were most common in the Pv (39%), intermediate in the claustrum (15%), and least common in the dLGN (12%). In the claustrum, non-GABAergic terminals (0.34 ± 0.01 μm 2 ) and striate cortex terminals were not significantly different in size. The largest terminals in the claustrum were GABAergic (0.51 ± 0.02 μm 2 ), and these terminals contacted dendrites and somata that were significantly larger (1.90 ± 0.30 μm 2 ) than those contacted by cortex or non-GABAergic terminals (0.28 ± 0.02 μm 2 and 0.25 ± 0.02 μm 2 , respectively). Our results indicate that the synaptic organization of the claustrum does not correspond to a driver/modulator framework. Instead, the circuitry of the claustrum suggests an integration of convergent cortical inputs, gated by GABAergic circuits. J. Comp. Neurol. 525:1403–1420, 2017. © 2016 Wiley Periodicals, Inc. 2018-04-25T07:25:30Z 2018-04-25T07:25:30Z 2017-04-15 Journal 10969861 00219967 2-s2.0-84962909749 10.1002/cne.23998 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84962909749&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/47186 |
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© 2016 Wiley Periodicals, Inc. The tree shrew (Tupaia belangeri) striate cortex is reciprocally connected with the dorsal lateral geniculate nucleus (dLGN), the ventral pulvinar nucleus (Pv), and the claustrum. In the Pv or the dLGN, striate cortex projections are thought to either strongly “drive”, or more subtly “modulate” activity patterns respectively. To provide clues to the function of the claustrum, we compare the synaptic arrangements of striate cortex projections to the dLGN, Pv, and claustrum, using anterograde tracing and electron microscopy. Tissue was additionally stained with antibodies against γ-aminobutyric acid (GABA) to identify GABAergic interneurons and non-GABAergic projection cells. The striate cortex terminals were largest in the Pv (0.94 ± 0.08 μm 2 ), intermediate in the claustrum (0.34 ± 0.02 μm 2 ), and smallest in the dLGN (0.24 ± 0.01 μm 2 ). Contacts on interneurons were most common in the Pv (39%), intermediate in the claustrum (15%), and least common in the dLGN (12%). In the claustrum, non-GABAergic terminals (0.34 ± 0.01 μm 2 ) and striate cortex terminals were not significantly different in size. The largest terminals in the claustrum were GABAergic (0.51 ± 0.02 μm 2 ), and these terminals contacted dendrites and somata that were significantly larger (1.90 ± 0.30 μm 2 ) than those contacted by cortex or non-GABAergic terminals (0.28 ± 0.02 μm 2 and 0.25 ± 0.02 μm 2 , respectively). Our results indicate that the synaptic organization of the claustrum does not correspond to a driver/modulator framework. Instead, the circuitry of the claustrum suggests an integration of convergent cortical inputs, gated by GABAergic circuits. J. Comp. Neurol. 525:1403–1420, 2017. © 2016 Wiley Periodicals, Inc. |
format |
Journal |
author |
Jonathan D. Day-Brown Arkadiusz S. Slusarczyk Na Zhou Ranida Quiggins Heywood M. Petry Martha E. Bickford |
spellingShingle |
Jonathan D. Day-Brown Arkadiusz S. Slusarczyk Na Zhou Ranida Quiggins Heywood M. Petry Martha E. Bickford Synaptic organization of striate cortex projections in the tree shrew: A comparison of the claustrum and dorsal thalamus |
author_facet |
Jonathan D. Day-Brown Arkadiusz S. Slusarczyk Na Zhou Ranida Quiggins Heywood M. Petry Martha E. Bickford |
author_sort |
Jonathan D. Day-Brown |
title |
Synaptic organization of striate cortex projections in the tree shrew: A comparison of the claustrum and dorsal thalamus |
title_short |
Synaptic organization of striate cortex projections in the tree shrew: A comparison of the claustrum and dorsal thalamus |
title_full |
Synaptic organization of striate cortex projections in the tree shrew: A comparison of the claustrum and dorsal thalamus |
title_fullStr |
Synaptic organization of striate cortex projections in the tree shrew: A comparison of the claustrum and dorsal thalamus |
title_full_unstemmed |
Synaptic organization of striate cortex projections in the tree shrew: A comparison of the claustrum and dorsal thalamus |
title_sort |
synaptic organization of striate cortex projections in the tree shrew: a comparison of the claustrum and dorsal thalamus |
publishDate |
2018 |
url |
https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84962909749&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/47186 |
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1681423014062718976 |