Distribution of hippocampal CA1 and subicular efferents in the prefrontal cortex of the rat studied by means of anterograde transport of Phaseolus vulgaris‐leucoagglutinin
- 22 November 1991
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 313 (4) , 574-586
- https://doi.org/10.1002/cne.903130404
Abstract
Projections of the hippocampal formation to the prefrontal cortex were visualized in the rat by means of the anterograde tracer Phaseolus vulgaris‐leucoagglutinin. These projections distribute only to the prelimbic and the medial orbital cortices and arise exclusively from restricted portions of field CA1 of the Ammon's horn and the subiculum. The most dorsal portion of CA1 does not contribute fibers to this projection. In the subiculum, its origin is restricted to the proximal half, i.e., the portion that directly borders field CA1. Fibers from field CA1 and the subiculum have comparable distribution patterns in the prelimbic and medial orbital cortices. The density and distribution in the prefrontal cortex of the projections from the proximal portion of the subiculum depends on the location of the injections along the dorsoventral axis of the hippocampal formation: the intermediate portion of the subiculum projects more densely and diffusely than its dorsal and ventral portions. In the prelimbic cortex, labeled fibers are present in all layers, showing marked morphological differences in deep versus superficial layers. In layers V and VI, most of the fibers are vertically oriented, while in layers II and III they are short and oriented towards the pial surface. Although no clear differences in terminal distribution were observed along the rostrocaudal extent of the prelimbic cortex, its dorsal and ventral portions show different innervation patterns. In the ventral portion of the prelimbic cortex, varicose fibers and terminal arborizations were present in all cortical layers, deep (V and VI) as well as superficial (II and III). In its dorsal part, the innervation was less dense and mostly present in the deep layers (V and VI). The fiber and terminal distribution in the medial orbital cortex was diffuse in all layers with a slight preference for layers deep to layer II.Keywords
This publication has 39 references indexed in Scilit:
- The organization of the rat motor cortex: A microstimulation mapping studyPublished by Elsevier ,2003
- Heterogeneity in the Dorsal Subiculum of the Rat. Distinct Neuronal Zones Project to Different Cortical and Subcortical TargetsEuropean Journal of Neuroscience, 1990
- Functional organization of the extrinsic and intrinsic circuitry of the parahippocampal regionProgress in Neurobiology, 1989
- Connections of the parahippocampal cortex in the cat. III. Cortical and thalamic efferentsJournal of Comparative Neurology, 1986
- Neuroanatomical tracing by use of Phaseolus vulgaris-leucoagglutinin (PHA-L): electron microscopy of PHA-L-filled neuronal somata, dendrites, axons and axon terminalsBrain Research, 1985
- Functions of the frontal cortex of the rat: A comparative reviewBrain Research Reviews, 1984
- Chunking and consolidation: A theoretical synthesis of semantic networks, configuring in conditioning, S-R versus cognitive learning, normal forgetting, the amnesic syndrome, and the hippocampal arousal system.Psychological Review, 1979
- Projections from the amygdaloid complex to the cerebral cortex and thalamus in the rat and catJournal of Comparative Neurology, 1977
- Efferent connections of the hippocampal formation in the ratBrain Research, 1977
- Cortico-cortical connections in the rhesus monkeyBrain Research, 1969