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1 laterals that entered the deep white matter (alveus).
2 evident 24 hours after HI in the hippocampal alveus.
3 s fiber pathway did not enter the fimbria or alveus along the entire distance of the traced pathway a
4 rizontal dendrites restricted to str. oriens/alveus and innervated stratum radiatum and oriens.
5 s in the pyramidal layer [int(p)] and in the alveus and st. oriens [int(a/o)], respectively.
6 rites, which were confined to stratum oriens-alveus and their axons which projected to stratum lacuno
7 unoreactivity present in the angular bundle, alveus, and fimbria and relatively scant immunoreactivit
8 ppocampal hilus and eventually away into the alveus, and the fimbria.
9 f the cell's soma location along the fissure-alveus axis of the cell layer.
10 ppocampal interneurons located at the oriens-alveus border express mGluR1alpha, a metabotropic glutam
11 A1 and interneurones near the stratum oriens-alveus border revealed excitatory connections that displ
12 ., interneurons were the main targets in the alveus, both interneurons and pyramidal cell dendrites w
13  from brain regions that project through the alveus during development would not grow across CSPG sub
14 tal dendritic branches within stratum oriens/alveus elicited fast Ca2+ transients, which showed a ste
15  Application of a tetanizing stimulus to the alveus evoked long-term potentiation (LTP) of the intrac
16                           From controls, the alveus, fimbria, pyramidal cell layer, hippocampal sulcu
17 tin (SOM) interneurons in CA1 stratum oriens/alveus fire during hippocampal theta and investigated sy
18 1 pyramidal neurons and stratum (st.) oriens-alveus inhibitory interneurons in rat hippocampal slices
19 eurones were classified as horizontal oriens-alveus interneurones by the pronounced 'sag' in response
20 g activity in rat hippocampal stratum oriens-alveus interneurones was studied using whole-cell and pe
21 taneous firing in hippocampal stratum oriens-alveus interneurones.
22           Two types of stratum (st.) oriens/ alveus interneurons received passive propagation of syna
23  were comprised almost exclusively of oriens/alveus interneurons with lacunosum-moleculare axon arbor
24           In addition, AA blocked st. oriens-alveus-lacunosum-moleculare interneuron transient curren
25 he CSPG neurocan is expressed throughout the alveus, neuropil layers, and parts of the dentate gyrus
26 ntiation (LTP) in hippocampal stratum oriens-alveus (O/A) interneurons requires co-activation of post
27 y synapses between principal cell and oriens/alveus (O/A) interneurons, a particular form of NMDA-ind
28 ns within the hippocampal CA1 stratum oriens/alveus (O/A), with preferential innervation of oriens-la
29 pses onto hippocampal interneurons in oriens-alveus (OA-INs) which is induced by activation of type 1
30   PPI was assessed by stimulating either the alveus or str. radiatum and recording the extracellular
31 , with the highest density in the CA1 strata alveus/oriens/pyramidale and the dentate hilus.
32                                PPI following alveus stimulation was not affected by PILO; however, a
33 dence of such loss in a control pathway, the alveus, suggesting that these findings are not evidence
34 g of neurocan was observed in regions of the alveus surrounding L1-expressing axon fascicles.
35 lar dendrites extend into the stratum oriens-alveus while the apical dendrites project deep into the

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