IPSILATERAL ASSOCIATIONAL PATHWAY IN THE DENTATE GYRUS - AN EXCITATORY FEEDBACK-SYSTEM THAT SUPPORTS N-METHYL-D-ASPARTATE-DEPENDENT LONG-TERM POTENTIATION

被引:44
作者
HETHERINGTON, PA [1 ]
AUSTIN, KB [1 ]
SHAPIRO, ML [1 ]
机构
[1] MCGILL UNIV, DEPT PSYCHOL, MONTREAL H3A 1B1, PQ, CANADA
关键词
HIPPOCAMPUS; HILUS; MESSY CELL; LTP; SYNAPTIC PLASTICITY; CA3;
D O I
10.1002/hipo.450040405
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Axons from granule cells in the dentate gyrus of the rat hippocampus project to cells in the hilar region, including messy cells, which project along the longitudinal axis of the hippocampus and synapse in the inner (proximal) one-third of the molecular layer of the dentate gyrus. To study this feedback system, multiple recording electrodes were located along the longitudinal (septo-temporal) axis in the dorsal leaf of the dentate gyrus in urethane-anesthetized rats. Single pulse electrical stimuli delivered to the hilar region evoked negative-going, monosynaptic field potentials that were largest in the inner one-third of the molecular layer (commissural zone). These evoked field potentials (EFPs) were recorded simultaneously at three to five locations. The latency to onset and peak amplitude of the EFP varied linearly with distance from point of stimulation, and EFPs were elicited in both directions along the longitudinal axis. The transmission speed was estimated to be 1.4 m/s. Tetanic stimulation of the hilar region potentiated the EFP slopes (mean = 26%). Potentiation lasted at least 2 hours and was specific to responses from the tetani:red stimulating electrode; the responses to other stimulating electrodes in the hilus and the angular bundle of the perforant path changed less than 4%. Combined stimulation of the hilus and the medial perforant path increased the magnitude of recorded field potentials and population spikes, demonstrating that both pathways are excitatory. NMDA antagonist NPC-17742 blocked potentiation of EFP slopes in both the medial perforant path and hilus pathways. The results suggest that the ipsilateral associational system of the dentate gyrus is excitatory and capable of supporting long-lasting, NMDA-dependent, synapse-specific plasticity. (c) 1994 Wiley-Liss, Inc.
引用
收藏
页码:422 / 438
页数:17
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