Leibniz-Institute for Neurobiology, Department of Neurophysiology, Brenneckestrasse 6, D-39118 Magdeburg, Germany.
J Neurosci Methods. 2009 Oct 30;184(1):79-87. doi: 10.1016/j.jneumeth.2009.07.024. Epub 2009 Jul 28.
Commonly, synaptic plasticity events such as long-term potentiation (LTP) are investigated by using a stimulation electrode and a single, monopolar field recording electrode in the dentate gyrus in intact, freely moving rats. The recording electrode is mostly positioned in the granular cell layer, or the hilar region of the dentate gyrus, i.e. far away from the place of generation of monosynaptic postsynaptic excitatory potentials (EPSP). Since LTP is a synaptic phenomenon and field recordings far away from the activated synapses do not guarantee a specific interpretation of the overlaid, mixture of complex potentials of several different electrical fields it is often difficult or even impossible to interpret the data obtained by such a single recording electrode. Therefore, at least a separate or two recording electrodes should be used to record the EPSP as well as the spike, respectively, ideally at their places of generation. Here, we describe a method by implanting a chronic bipolar recording electrode which fulfils the above requirements by recording the field-EPSP as well as the population spike at their places of generation and describe the time course of LTP measured using this "double-recording" electrode. We show that different tetanization protocols resulted in EPSP- or population spike-LTP but only if the potentials were recorded by electrodes positioned within adequate places of potential generation. Interestingly, the commonly used recording in the hilus of a distinct part of a potential, mistakenly analyzed as an "EPSP" did not reveal any LTP.
通常,通过在完整的、自由移动的大鼠的齿状回中使用刺激电极和单个单极场记录电极来研究突触可塑性事件,如长时程增强(LTP)。记录电极大多位于颗粒细胞层或齿状回的门区,即远离产生单突触突触后兴奋性电位(EPSP)的位置。由于 LTP 是一种突触现象,并且远离激活突触的场记录并不能保证对叠加的、几种不同电场的复杂电位的特定解释,因此通常很难甚至不可能解释通过单个记录电极获得的数据。因此,至少应使用单独的或两个记录电极分别记录 EPSP 和尖峰,理想情况下在它们的产生位置。在这里,我们描述了一种通过植入慢性双极记录电极来实现上述要求的方法,该方法通过在其产生位置记录场-EPSP 以及群体尖峰来实现,并且描述了使用这种“双记录”电极测量的 LTP 的时程。我们表明,不同的强直刺激方案导致 EPSP 或群体尖峰-LTP,但前提是通过位于适当的潜在产生位置的电极记录电位。有趣的是,通常在门区的一个特定部位记录的记录,错误地分析为“EPSP”,并没有显示出任何 LTP。