Department of Anatomy, School of Medicine, University of Koç, Istanbul, Turkey.
Neurol Sci. 2012 Apr;33(2):251-9. doi: 10.1007/s10072-011-0666-5. Epub 2011 Jul 1.
Abnormal functional properties of the thalamocortical connections were reported in the absence of epilepsy. The present study compares the ratios of terminals ('RL'-round vesicles, large terminals, 'RS'-round vesicles, small terminals and 'F'-flattened vesicles) and synapse in three first-order (ventrobasal, lateral geniculate and anteroventral) and in three higher-order (posterior, lateral posterior and mediodorsal) thalamic nuclei of genetic absence epilepsy rats from Strasbourg (GAERS) with our earlier quantitative studies of normal Wistar rats to show whether quantitative differences were present in GAERS as compared to Wistar rat. Rats were perfused transcardially, the brains were removed and cut as 300 μm coronal sections. Parts of the six thalamic nuclei were removed for routine electron microscopy and GABA immunocytochemistry. Twenty photographs from each section at 20,000× magnification were taken, and the terminals were identified as RL, RS or F. (1) In normal Wistar rats (as in cats), the proportion of driver terminals (RL) and synapses is lower in higher-order than in first-order thalamic nuclei, but this difference is not present in GAERS animals. (2) The proportions of RS terminals and synapses for each thalamic nucleus showed no significant differences between GAERS and Wistar rats for any of the thalamic nuclei. (3) In GAERS, the proportion of inhibitory F terminals and synapses was significantly high in the VB and low in the LP thalamic nucleus. These abnormal ratios in the GAERS may be the cause of the spike-and-wave discharges of absence seizures or may represent a compensatory response of the thalamocortical circuitry to the absence seizures.
在没有癫痫的情况下,报道了丘脑皮质连接的异常功能特性。本研究比较了三种一级(腹侧基底核、外侧膝状体和前腹侧核)和三种高级(后核、外侧后核和中背核)丘脑核中来自斯特拉斯堡遗传性癫痫大鼠(GAERS)的终端('RL'-圆形囊泡、大终端、'RS'-圆形囊泡、小终端和'F'-扁平囊泡)和突触的比例,以及我们之前对正常 Wistar 大鼠的定量研究,以显示 GAERS 与 Wistar 大鼠相比是否存在定量差异。大鼠经心脏灌流,取出大脑并切成 300μm 冠状切片。取出六个丘脑核的部分用于常规电子显微镜和 GABA 免疫细胞化学。在 20,000×放大倍数下,从每个切片的 20 张照片中取出,并将终端鉴定为 RL、RS 或 F。(1)在正常 Wistar 大鼠(如猫)中,高级丘脑核中的驱动终端(RL)和突触的比例低于一级丘脑核,但在 GAERS 动物中不存在这种差异。(2)对于任何丘脑核,GAERS 和 Wistar 大鼠之间 RS 终端和突触的比例均无显着差异。(3)在 GAERS 中,VB 和 LP 丘脑核中抑制性 F 终端和突触的比例显着升高。GAERS 中的这些异常比值可能是失神发作棘波和慢波放电的原因,也可能代表丘脑皮质电路对失神发作的代偿反应。