Wilson R C, Steward O
Exp Brain Res. 1978 Nov 15;33(3-4):523-34. doi: 10.1007/BF00235572.
The possibility that olfactory input is transmitted to specific subregions of the hippocampal formation via the entorhinal cortex was investigated electrophysiologically by analyzing the laminar profiles of potentials evoked in the hippocampal formation by stimulation of the lateral olfactory tract (LOT). LOT stimulation resulted in long latency (14--20 ms) evoked responses in the dentate gyrus of the hippocampal formation ipsilateral to the stimulation. The variable long latency of these responses and their inability to follow stimulus rates of 40/s suggested that these potentials reflected polysynaptic activation. Analysis of the laminar profiles of the evoked potentials indicated that the responses originated from a synaptic field localized in the outer portion of the stratum moleculare of the dentate gyrus, a terminal distribution which overlaps that of the lateral entorhinal cortical (LEC) projection to the dentate gyrus. Lesions of the LEC eliminated the long latency responses in the dentate gyrus evoked by LOT stimulation. In addition, a conditioning pulse delivered either to the LOT or to the LEC produced paired pulse potentiation of the response elicited by subsequent stimulation of the other structure. No evidence was found to indicate that responses were generated in regio superior of the hippocampus proper following LOT stimulation. Taken together, these results suggest that stimulation of the LOT activates the dentate gyrus of the hippocampal formation by multisynaptic pathways which relay through the lateral portion of the entorhinal area. This finding is discussed with regard to entorhinal cortical organization and the known olfactory projections to the LEC.
通过分析外侧嗅束(LOT)刺激在海马结构中诱发的电位的分层分布,用电生理学方法研究了嗅觉输入是否通过内嗅皮质传递到海马结构的特定亚区域。LOT刺激在刺激同侧的海马结构齿状回中引发了长潜伏期(14 - 20毫秒)的诱发反应。这些反应的可变长潜伏期以及它们无法跟随40次/秒的刺激频率表明,这些电位反映了多突触激活。对诱发电位分层分布的分析表明,反应起源于齿状回分子层外层局部的一个突触场,该终末分布与外侧内嗅皮质(LEC)向齿状回的投射重叠。LEC损伤消除了LOT刺激在齿状回中引发的长潜伏期反应。此外,向LOT或LEC施加的条件脉冲会对随后刺激另一个结构所引发的反应产生配对脉冲增强作用。未发现有证据表明LOT刺激后海马体本部的上区会产生反应。综上所述,这些结果表明,LOT刺激通过多突触通路激活海马结构的齿状回,这些通路通过内嗅区的外侧部分进行中继。结合内嗅皮质组织和已知的向LEC的嗅觉投射对这一发现进行了讨论。