Abraham W C, Hunter B E
Exp Brain Res. 1982;47(1):61-8. doi: 10.1007/BF00235887.
This study investigated the persistent effects of chronic ethanol consumption on the distribution of entorhinal afferents to stratum moleculare of the dentate gyrus. Rats were maintained on ethanol, or sucrose-containing liquid diets, for a period of 20 weeks but were withdrawn from the special diet for at least 8 weeks prior to acute electrophysiologic recordings. One-dimensional laminar analyses were obtained by stepping a microelectrode in 25 microns increments across both the dorsal and ventral blades of the dentate gyrus and sampling the field potentials at each point. Current-source density (CSD) was calculated from the field potential data. Electrical stimulation of the angular bundle elicited a short-latency, negative field potential covering the outer 2/3 of the molecular layer. CSD analysis revealed a major current sink in stratum moleculare bounded by a major current source, localized to the hilus, granule cell layer, and proximal stratum moleculare, and a minor current source localized to the outer molecular layer. Chronic ethanol treatment resulted in (1) a significant shrinkage of the spatial extent of the current sink in stratum moleculare, (2) a significant reduction in the distance from the peak inward synaptic current to the granule cell layer and (3) no change in the distance from the proximal inversion point to the granule cell layer. Taken together, these results indicate a loss of entorhinal afferents in the outer molecular layer. Coupled with available anatomical evidence, these results suggest that chronic ethanol treatment produces a preferential loss of lateral entorhinal afferents to the dentate gyrus.
本研究调查了长期乙醇摄入对齿状回分子层内嗅传入纤维分布的持续性影响。大鼠持续摄入乙醇或含蔗糖的液体饲料20周,但在进行急性电生理记录前至少8周停止特殊饮食。通过以25微米的增量在齿状回的背侧和腹侧叶片上移动微电极,并在每个点采集场电位,获得一维层分析。根据场电位数据计算电流源密度(CSD)。对角束进行电刺激会引发一个短潜伏期的负场电位,覆盖分子层的外2/3。CSD分析显示,分子层中有一个主要电流汇,由一个主要电流源界定,该主要电流源位于海马体、颗粒细胞层和近端分子层,还有一个次要电流源位于外分子层。长期乙醇处理导致:(1)分子层中电流汇的空间范围显著缩小;(2)从内向突触电流峰值到颗粒细胞层的距离显著缩短;(3)从近端反转点到颗粒细胞层的距离没有变化。综上所述,这些结果表明外分子层内嗅传入纤维缺失。结合现有的解剖学证据,这些结果表明长期乙醇处理会导致齿状回外侧内嗅传入纤维优先丧失。