Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9425491 | Neuroscience | 2005 | 23 Pages |
Abstract
Our results show widespread intra-accumbens projection patterns, including reciprocal projections between specific parts of the shell and core. However, fibers originating in the core reach more distant areas of the shell, including the rostral pole (i.e. the calbindin-poor part of the shell anterior to the core) and striatal parts of the olfactory tubercle, than those arising in the shell and projecting to the core. The latter projections are more restricted to the border region between the shell and core. The density of the fiber labeling within both the shell and core was very similar. Moreover, specific intrinsic projections within shell and core were identified, including a relatively strong projection from the rostral pole to the rostral shell, reciprocal projections between the rostral and caudal shell, as well as projections within the core that have a caudal-to-rostral predominance. The results of the juxtacellular filling experiments show that medium-sized spiny projection neurons and medium-sized aspiny neurons (most likely fast-spiking) contribute to these intra-accumbens projections. While such neurons are GABAergic, the intrastriatal projection patterns indicate the existence of lateral inhibitory interactions within, as well as between, shell and core subregions of the nucleus accumbens.
Keywords
DABDAB-Ni3,3′-diaminobenzidine-tetrahydrochloridePhaseolus vulgaris-leucoagglutininJuxtacellular labelingmPAPTBS-TXPHA-LMSNBDATBSABCPBSPFCCPUCA1Acbcaudate-putamenDMSOVentral pallidumVentral striatumImmunoreactivityphosphate bufferbiotinylated dextran amineCABTris-buffered salinetwo-dimensionalDimethyl sulfoxideprefrontal cortexavidin–biotin–peroxidase complexPhosphate-buffered salineneurobiotinNucleus accumbens
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Authors
Y.C. van Dongen, J.-M. Deniau, C.M.A. Pennartz, Y. Galis-de Graaf, P. Voorn, A.-M. Thierry, H.J. Groenewegen,