Projections from the lateral, basal, and accessory basal nuclei of the amygdala to the entorhinal cortex in the macaque monkey
- 1 January 2002
- journal article
- research article
- Published by Wiley in Hippocampus
- Vol. 12 (2), 186-205
- https://doi.org/10.1002/hipo.1099
Abstract
We used the anterograde tracers Phaseolus vulgaris‐leucoagglutinin (PHA‐L) and biotinylated dextran amine (BDA) to examine the projections from the lateral, basal, and accessory basal nuclei of the amygdaloid complex to the entorhinal cortex in Macaca fascicularis monkeys. The heaviest amygdaloid projections originate in the lateral nucleus, which innervates the rostrally situated entorhinal fields but does not project to the caudal entorhinal cortex. The most extensive projections originate in the ventral division of the lateral nucleus. Injections in this subdivision lead to moderate to heavy fiber and terminal labeling in the entorhinal cortex, rostral levels of the rostral intermediate EI (ER) and lateral fields, (ELr), and light labeling in the olfactory field EO. The projections from all portions of the lateral nucleus terminate most heavily in layer III. Layer II of EO and ER also receives a substantial input from the ventral division of the lateral nucleus. Layer II of ELr receives light innervation from all portions of the lateral nucleus that project to layer III. Projections from the basal nucleus arise mainly from the parvicellular division and are light to moderate in density. Fibers terminate predominantly in ELr, ER, EO, and the caudal portion of the lateral field (Elc); only the most rostral portion of EI receives projections. While fibers from the basal nucleus innervate the same layers as the projections from the lateral nucleus, they tend to have a more vertical or radial orientation within the entorhinal cortex. Electron microscopic analysis of these fibers and terminals indicates that they overwhelmingly form asymmetrical synapses onto dendrites and dendritic spines. The accessory basal nucleus provides a light projection to the same regions of the entorhinal cortex innervated by the lateral and basal nuclei. Hippocampus 2002;12:186–205.Keywords
Funding Information
- NIH (RR00169, MH41479, NS16980)
- Academy of Finland
- Fogarty International Fellowship (1 F05 TW04343)
- Saastamoinen Foundation
This publication has 23 references indexed in Scilit:
- Organization of Corticostriatal and Corticoamygdalar Projections Arising from the Anterior Inferotemporal Area TE of the Macaque Monkey: APhaseolus vulgarisLeucoagglutinin StudyJournal of Neuroscience, 1997
- The contribution of the amygdala to normal and abnormal emotional statesTrends in Neurosciences, 1993
- The entorhinal cortex of the monkey: III. Subcortical afferentsJournal of Comparative Neurology, 1987
- The entorhinal cortex of the monkey: I. Cytoarchitectonic organizationJournal of Comparative Neurology, 1987
- The entorhinal cortex of the monkey: II. Cortical afferentsJournal of Comparative Neurology, 1987
- A description of the amygdalo-hippocampal interconnections in the macaque monkeyExperimental Brain Research, 1986
- Neurophysiology of limbic system pathways in the rat: Projections from the amygdala to the entorhinal cortexBrain Research, 1986
- Amygdalohippocampal and Amygdalocortical Projections in the Primate BrainPublished by Springer Nature ,1986
- The commissural connections of the monkey hippocampal formationJournal of Comparative Neurology, 1984
- An anterograde neuroanatomical tracing method that shows the detailed morphology of neurons, their axons and terminals: Immunohistochemical localization of an axonally transported plant lectin,Phaseolus vulgaris leucoagglutinin (PHA-L)Brain Research, 1984