The heterogeneous paraventricular nucleus (PVN) of birds offers favorable conditions for the analysis of intrinsic, afferent, and efferent connections of neuroendocrine systems. Paraventricular neurons are successfully impregnated with the Golgi-technique. The findings indicate a direct influence of
Intrinsic and efferent connections of the endopiriform nucleus in rat
โ Scribed by Behan, Mary; Haberly, Lewis B.
- Publisher
- John Wiley and Sons
- Year
- 1999
- Tongue
- English
- Weight
- 845 KB
- Volume
- 408
- Category
- Article
- ISSN
- 0021-9967
No coin nor oath required. For personal study only.
โฆ Synopsis
The endopiriform nucleus is a large group of multipolar cells located deep to the piriform cortex. The function of this nucleus is unknown, but studies with animal models suggest that it plays an important role in temporal lobe epileptogenesis. To address questions concerning mechanisms of epileptogenesis and to gain insights into its normal function, efferent axons from the endopiriform nucleus were labeled by anterograde transport from small extracellular injections of Phaseolus vulgaris leucoagglutinin.
Several principles of organization were derived: (1) heavy local and long intrinsic connections are present throughout the endopiriform nucleus; (2) endopiriform efferents target cortical rather than nuclear structures; (3) extensive projections from the endopiriform nucleus extend to most basal forebrain areas including the piriform cortex, entorhinal cortex, insular cortex, orbital cortex, and all cortical amygdaloid areas. The perirhinal cortex, olfactory tubercle, and most subdivisions of the hippocampal formation receive light projections; (4) projections are highly distributed spatially within all target areas; (5) efferent axons from the endopiriform nucleus are unmyelinated and give rise to boutons along their entire course rather than arborizing locally; and (6) the endopiriform nucleus and piriform cortex share target areas, but efferents from the endopiriform nucleus lack the precise laminar order of those from the piriform cortex, and provide a heavy caudal to rostral pathway that is lacking in the cortex.
The significance of these findings for the triggering of generalized seizures from the deep piriform region are discussed. An hypothesis for a role of the endopiriform nucleus in memory storage is presented.
๐ SIMILAR VOLUMES
Using the experimental method of retrograde cell degeneration efferent connections of the supra-geniculate nucleus to the caudal part of the ipsilateral putamen were demonstrated in rats. Following lesions in the cortex, rostra1 putamen and caudate nucleus the supra-geniculate nucleus remains intact
A study was made of the efferent fiber connections of the trigeminal nucleus caudalis in the marmoset monkey (Oedipomidas oedipus). Degeneration resulting from nucleus caudalis lesions in twelve animals was studied by the Nauta technique. Following lesions of the trigeminal nucleus caudalis, degener
In a previous report (Buisseret-Delmas et al. [1993] Neurosci. , the authors identified the interface between the cerebellar nuclei medialis and interpositus as the origin of the nuclear output from cortical zone X. They named this nuclear interface the interstitial cell group (icg). In this study,
The purpose of the experiment was to determine the connections of the three regions of the anterior vcntral cochlear nucleus in the rat. Lesions were placed in the regions of the nucleus in 11 rats. After 25 days each animal was sacrificed and its brain impregnated by the protargol method of Bodian.