Nakagami Y, Saito H, Matsuki N
Department of Chemical Pharmacology, Faculty of Pharmaceutical Sciences, University of Tokyo, Japan.
Neurosci Lett. 1996 Oct 4;216(3):211-3. doi: 10.1016/0304-3940(96)13001-9.
It is difficult to comprehend the entorhino-hippocampal information processing using acute transverse hippocampal slice, because the dorsally inclined connections of the entorhino-hippocampal projections can be damaged easily. Therefore, we investigated the spatial-temporal propagation in organotypic cultures of the hippocampus attaching to the entorhinal cortex using a real-time optical recording system with a voltage-sensitive dye and suitability as an in vitro model. Real-time imaging demonstrated that the stimulation of the perforant pathway induced excitatory propagation in trisynaptic pathway of the hippocampus and sequentially in the layer V from the medial to the lateral entorhinal cortex. The horizontal propagation from the lateral to the medial site was also seen after the stimulation of the lateral entorhinal cortex. The analysis of the entorhino-hippocampal organotypic culture would contribute to understanding of the mechanism of learning and memory.
使用急性横向海马切片很难理解内嗅-海马信息处理过程,因为内嗅-海马投射的背侧倾斜连接很容易受损。因此,我们使用带有电压敏感染料的实时光学记录系统,研究了附着在内嗅皮质上的海马器官型培养物中的时空传播以及作为体外模型的适用性。实时成像表明,穿通通路的刺激在海马的三突触通路中诱导兴奋性传播,并依次从内侧内嗅皮质到外侧内嗅皮质在V层中传播。刺激外侧内嗅皮质后也观察到了从外侧到内侧位点的水平传播。对内嗅-海马器官型培养物的分析将有助于理解学习和记忆的机制。