Topographical and laminar distribution of cortical input to the monkey entorhinal cortex
Open Access
- 15 June 2007
- journal article
- review article
- Published by Wiley in Journal of Anatomy
- Vol. 211 (2) , 250-260
- https://doi.org/10.1111/j.1469-7580.2007.00764.x
Abstract
Hippocampal formation plays a prominent role in episodic memory formation and consolidation. It is likely that episodic memory representations are constructed from cortical information that is mostly funnelled through the entorhinal cortex to the hippocampus. The entorhinal cortex returns processed information to the neocortex. Retrograde tracing studies have shown that neocortical afferents to the entorhinal cortex originate almost exclusively in polymodal association cortical areas. However, the use of retrograde studies does not address the question of the laminar and topographical distribution of cortical projections within the entorhinal cortex. We examined material from 60 Macaca fascicularis monkeys in which cortical deposits of either 3H‐amino acids or biotinylated dextran‐amine as anterograde tracers were made into different cortical areas (the frontal, cingulate, temporal and parietal cortices). The various cortical inputs to the entorhinal cortex present a heterogeneous topographical distribution. Some projections terminate throughout the entorhinal cortex (afferents from medial area 13 and posterior parahippocampal cortex), while others have more limited termination, with emphasis either rostrally (lateral orbitofrontal cortex, agranular insular cortex, anterior cingulate cortex, perirhinal cortex, unimodal visual association cortex), intermediate (upper bank of the superior temporal sulcus, unimodal auditory association cortex) or caudally (parietal and retrosplenial cortices). Many of these inputs overlap, particularly within the rostrolateral portion of the entorhinal cortex. Some projections were directed mainly to superficial layers (I–III) while others were heavier to deep layers (V–VI) although areas of dense projections typically spanned all layers. A primary report will provide a detailed analysis of the regional and laminar organization of these projections. Here we provide a general overview of these projections in relation to the known neuroanatomy of the entorhinal cortex.Keywords
This publication has 23 references indexed in Scilit:
- Entorhinal cortex of the monkey: VII. Intrinsic connectionsJournal of Comparative Neurology, 2006
- Reciprocal connections between olfactory structures and the cortex of the rostral superior temporal sulcus in the Macaca fascicularis monkeyEuropean Journal of Neuroscience, 2005
- Cortical efferents of the entorhinal cortex and the adjacent parahippocampal region in the monkey (Macaca fascicularis)European Journal of Neuroscience, 2005
- Hippocampal FormationPublished by Elsevier ,2004
- Entorhinal cortex of the monkey: V. Projections to the dentate gyrus, hippocampus, and subicular complexJournal of Comparative Neurology, 1991
- A comparison of the efferents of the amygdala and the hippocampal formation in the rhesus monkey: I. Convergence in the entorhinal, prorhinal, and perirhinal corticesJournal of Comparative Neurology, 1988
- The entorhinal cortex of the monkey: I. Cytoarchitectonic organizationJournal of Comparative Neurology, 1987
- The parahippocampal gyrus: New observations regarding its cortical connections in the monkeyTrends in Neurosciences, 1982
- Some connections of the entorhinal (area 28) and perirhinal (area 35) cortices of the rhesus monkey. II. Frontal lobe afferentsBrain Research, 1975
- LOSS OF RECENT MEMORY AFTER BILATERAL HIPPOCAMPAL LESIONSJournal of Neurology, Neurosurgery & Psychiatry, 1957