Nikitin E S, Balaban P M
Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Sciences, Moscow.
Zh Vyssh Nerv Deiat Im I P Pavlova. 1999 Sep-Oct;49(5):817-29.
Regular oscillations were recorded in olfactory part of the brain (procerebrum) of gastropod mollusk Helix both electrographically and optically. In general, oscillations resembled those in slugs reported earlier. Odor application caused a transient change in the procerebral oscillations followed by appearance of a special pattern. For the first time the evoked potential was recorded in procerebrum and mapped in reference to the area of oscillations. The area of spreading of evoked potential roughly corresponded to the neuropil projection, while the oscillations were recorded in the projection of the cell body layer of procerebrum. The wave of the evoked potential emerged near the place of the olfactory nerve entrance into the procerebrum and propagated via the procerebrum neuropil towards the cell body layer. The evoked potential did not produce a phase-independent wave in rhythmical oscillations.
在腹足纲软体动物蛞蝓的大脑嗅觉部分(前脑),通过电图和光学方法记录到了规则的振荡。总体而言,这些振荡类似于先前报道的蛞蝓中的振荡。施加气味会导致前脑振荡发生短暂变化,随后出现一种特殊模式。首次在前脑中记录到诱发电位,并参照振荡区域进行了定位。诱发电位的传播区域大致对应于神经纤维网投影,而振荡则记录在前脑细胞体层的投影中。诱发电位的波在嗅神经进入前脑的位置附近出现,并通过前脑神经纤维网向细胞体层传播。诱发电位在节律性振荡中并未产生与相位无关的波。