4.6 Article

Multiple Layer 5 Pyramidal Cell Subtypes Relay Cortical Feedback from Secondary to Primary Motor Areas in Rats

Journal

CEREBRAL CORTEX
Volume 24, Issue 9, Pages 2362-2376

Publisher

OXFORD UNIV PRESS INC
DOI: 10.1093/cercor/bht088

Keywords

corticocortical; corticopontine; corticospinal; corticothalamic; Ctip2

Categories

Funding

  1. Japan Science and Technology Agency (JST), Core Research for Evolutional Science and Technology (CREST)
  2. Ministry of Education, Culture, Sports, Science, and Technology (MEXT
  3. KAKENHI) [21240030]
  4. Grants-in-Aid for Scientific Research [26120730, 25430019, 21240030, 24700338, 25115730, 23700478, 25250005] Funding Source: KAKEN

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Higher-order motor cortices, such as the secondary motor area (M2) in rodents, select future action patterns and transmit them to the primary motor cortex (M1). To better understand motor processing, we characterized top-down and bottom-up connectivities between M1 and M2 in the rat cortex. Somata of pyramidal cells (PCs) in M2 projecting to M1 were distributed in lower layer 2/3 (L2/3) and upper layer 5 (L5), whereas PCs projecting from M1 to M2 had somata distributed throughout L2/3 and L5. M2 afferents terminated preferentially in upper layer 1 of M1, which also receives indirect basal ganglia output through afferents from the ventral anterior and ventromedial thalamic nuclei. On the other hand, M1 afferents terminated preferentially in L2/3 of M2, a zone receiving indirect cerebellar output through thalamic afferents from the ventrolateral nucleus. While L5 corticopontine (CPn) cells with collaterals to the spinal cord did not participate in corticocortical projections, CPn cells with collaterals to the thalamus contributed preferentially to connections from M2 to M1. L5 callosal projection (commissural) cells participated in connectivity between M1 and M2 bidirectionally. We conclude that the connectivity between M1 and M2 is directionally specialized, involving specific PC subtypes that selectively target lamina receiving distinct thalamocortical inputs.

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