Chaillan F A, Truchet B, Roman F S, Soumireu-Mourat B
Laboratoire de Neurobiologie des Comportements, UMR 6562, Université de Provence, I.B.H.O.P., Traverse Charles Susini, Marseille, France.
Neuroscience. 1999;94(2):443-51. doi: 10.1016/s0306-4522(99)00304-8.
In this report, we investigated the electrophysiological dynamics of the neuronal circuit including the dentate gyrus during an associative task. A group of rats was trained to discriminate between a patterned electrical stimulation of the lateral olfactory tract, used as an artificial cue associated with a water reward, and a natural odor associated with a light flash. Polysynaptic field potential responses, evoked by a single electrical stimulation of the same lateral olfactory tract electrode, were recorded in the molecular layer of the ipsilateral dentate gyrus prior to and just after each training session. An increase in this response was observed when a significant discrimination of the two cues began. A positive correlation was found between the change in the polysynaptic potentiation and behavioral performances. The onset latency of the potentiated polysynaptic response was 35-45 ms. When a group of naive animals was pseudoconditioned, no change in field potential was observed. These results are consistent with the hypothesized dynamic activation of the dentate gyrus early in the making of association, allowing gradual storage of associative information in a defined set of synapses. Moreover, the onset latency of the potentiated response suggests the existence of reactivating hippocampal loops during the processing of associative information.
在本报告中,我们研究了在一项联想任务期间包括齿状回在内的神经回路的电生理动力学。一组大鼠接受训练,以区分作为与水奖励相关联的人工线索的外侧嗅束的模式化电刺激和与闪光相关联的自然气味。在每次训练前和训练刚结束后,在同侧齿状回分子层记录由同一外侧嗅束电极的单次电刺激诱发的多突触场电位反应。当对两种线索开始有显著区分时,观察到这种反应增强。在多突触增强的变化与行为表现之间发现了正相关。增强的多突触反应的起始潜伏期为35 - 45毫秒。当一组未受过训练的动物进行假条件反射时,未观察到场电位变化。这些结果与联想形成早期齿状回动态激活的假设一致,允许在一组特定的突触中逐渐存储联想信息。此外,增强反应的起始潜伏期表明在联想信息处理过程中存在重新激活的海马环路。