Kowalczyk Tomasz, Gołebiewski Henryk, Konopacki Jan
Department of Neurobiology, University of Łódź, 90-222 Łódź, Poland.
Brain Res Bull. 2009 Sep 28;80(3):139-46. doi: 10.1016/j.brainresbull.2009.07.003. Epub 2009 Jul 15.
In this study we investigated the ability of the dentate gyrus to independently generate cholinergically induced theta rhythm in vitro. Two different experiments were performed. In Experiment I, new laminar profiles of theta phase, amplitude, and current sources and sinks were constructed. In this experiment a gradual phase shift of theta waves in the CA1 stratum radiatum was observed. Simultaneously, two amplitude maxima were detected: the first in the CA1 stratum oriens, and the second in the CA1 stratum lacunosum-moleculare. Moreover, during the positive peak of theta in the CA1 stratum oriens, two large sinks were observed: the first localized in the stratum oriens and the second in the stratum lacunosum-moleculare. In Experiment II the EEG activity of three different transected hippocampal slices (CA1 transected slices, CA3c transected slices, and DG transected slices) was recorded. It was demonstrated that the dentate gyrus granular cell body layer was not able to independently produce in vitro theta rhythm. Data obtained in both experiments provide strong evidence that in cholinegically treated hippocampal formation maintained in vitro there is no independent generator of theta rhythm in the region of the dentate gyrus granular cell layer.
在本研究中,我们调查了齿状回在体外独立产生胆碱能诱导的θ节律的能力。进行了两项不同的实验。在实验I中,构建了θ相位、振幅以及电流源和电流汇的新层状分布图。在该实验中,观察到CA1辐射层中θ波的逐渐相位偏移。同时,检测到两个振幅最大值:第一个在CA1原层,第二个在CA1腔隙-分子层。此外,在CA1原层中θ的正峰值期间,观察到两个大的电流汇:第一个位于原层,第二个位于腔隙-分子层。在实验II中,记录了三种不同横断海马切片(CA1横断切片、CA3c横断切片和齿状回横断切片)的脑电图活动。结果表明,齿状回颗粒细胞体层在体外不能独立产生θ节律。两个实验获得的数据提供了强有力的证据,即在体外经胆碱处理的海马结构中,齿状回颗粒细胞层区域不存在θ节律的独立发生器。