van Groen T, Ruardy L, da Silva F H
Exp Neurol. 1986 Jul;93(1):67-76. doi: 10.1016/0014-4886(86)90145-7.
Field potentials elicited by electrical stimulation of the vomeronasal nerve were measured in the accessory olfactory bulb of the rabbit. Maps were made of the distribution of surface field potentials and of the corresponding depth profiles. The surface maps followed closely the contours of the accessory olfactory bulb: at the frontal border the field potential tended to zero and at the center of the structure the field potential attained a maximum. Depth profiles of the field potentials through the accessory olfactory bulb presented a surface-negative wave and, in depth, a positive wave. The polarity reversal occurred at the deep part of the granule cell layer. The zero equipotential line followed closely the curvature of the granule cell layer. Current source density analysis of the depth profiles revealed a main sink at the external plexiform and granule cell layers. This indicates that the main activity in the accessory olfactory bulb is generated by the synapses between the mitral cells and the granule cells as is found in the main olfactory bulb.
在兔的副嗅球中测量了通过电刺激犁鼻神经所诱发的场电位。绘制了表面场电位分布和相应深度剖面图。表面图紧密跟随副嗅球的轮廓:在额叶边界处场电位趋于零,在结构中心处场电位达到最大值。穿过副嗅球的场电位深度剖面图呈现出一个表面负波,在深度上则是一个正波。极性反转发生在颗粒细胞层的深部。零等势线紧密跟随颗粒细胞层的曲率。深度剖面图的电流源密度分析显示在外部丛状层和颗粒细胞层有一个主要的电流汇。这表明副嗅球中的主要活动是由嗅叶内侧细胞和颗粒细胞之间的突触产生的,这与在主嗅球中发现的情况相同。