Cappaert Natalie L M, Wadman Wytse J, Witter Menno P
Department of Anatomy, Institute for Clinical and Experimental Neurosciences, VU University Medical Center, Amsterdam, The Netherlands.
Hippocampus. 2007;17(10):909-21. doi: 10.1002/hipo.20309.
The subiculum and the entorhinal cortex (EC) are important structures in processing and transmitting information between the neocortex and the hippocampus. The subiculum potentially receives information from the EC through two routes. In addition to a direct projection from EC to the subiculum, there is an indirect polysynaptic connection. The latter uses a number of possible pathways, which all converge onto the final projection from the hippocampal field CA1 to the subiculum. In this series of experiments we investigated to what extent activity in both pathways influences population activity of subicular neurons. We used voltage sensitive dyes in combined hippocampal-EC slices of the rat to measure the spatio-temporal activity patterns. To activate the two inputs to the subiculum, stimulation electrodes were placed in the stratum oriens/alveus of CA1 and in layer III of the medial EC. The response patterns evoked in the subiculum after electrical stimulation of each of these input pathways separately were compared with the response patterns after simultaneous stimulation of both areas (medial EC + CA1). A comparison of the computed added responses of the two individual stimulations with the measured responses after simultaneous stimulation suggests that both inputs are linearly added in the subiculum with very little nonlinear interactions. This strongly suggests that in the subiculum interaction at a single cell level of the direct and the indirect pathways from the EC is an unlikely scenario.
海马下脚和内嗅皮质(EC)是在新皮质和海马体之间处理和传递信息的重要结构。海马下脚可能通过两条途径从内嗅皮质接收信息。除了从内嗅皮质到海马下脚的直接投射外,还存在一条间接的多突触连接。后者使用多种可能的通路,这些通路都汇聚到从海马CA1区到海马下脚的最终投射上。在这一系列实验中,我们研究了这两条通路中的活动在多大程度上影响海马下脚神经元的群体活动。我们在大鼠的海马-内嗅皮质联合切片中使用电压敏感染料来测量时空活动模式。为了激活海马下脚的两种输入,将刺激电极置于CA1区的海马齿状回原层/海马槽以及内侧内嗅皮质的III层。分别对这两种输入通路进行电刺激后在海马下脚诱发的反应模式,与同时刺激两个区域(内侧内嗅皮质+CA1)后的反应模式进行了比较。将两种单独刺激的计算相加反应与同时刺激后的测量反应进行比较,结果表明,在海马下脚中,两种输入以线性方式相加,非线性相互作用极少。这有力地表明,在海马下脚,来自内嗅皮质 的直接和间接通路在单个细胞水平上发生相互作用的可能性不大。