Center for Memory and Brain, Department of Psychology and Program in Neuroscience, Boston University, Boston, Massachusetts 02215, USA.
J Neurosci. 2011 Aug 31;31(35):12683-94. doi: 10.1523/JNEUROSCI.1654-11.2011.
Neurons from layer II of the medial entorhinal cortex show subthreshold membrane potential oscillations (SMPOs) which could contribute to theta-rhythm generation in the entorhinal cortex and to generation of grid cell firing patterns. However, it is unclear whether single neurons have a fixed unique oscillation frequency or whether their frequency varies depending on the mean membrane potential in a cell. We therefore examined the frequency of SMPOs at different membrane potentials in layer II stellate-like cells of the rat medial entorhinal cortex in vitro. Using whole-cell patch recordings, we found that the fluctuations in membrane potential show a broad band of low power frequencies near resting potential that transition to more narrowband oscillation frequencies with depolarization. The transition from broadband to narrowband frequencies depends on the location of the neuron along the dorsoventral axis in the entorhinal cortex, with dorsal neurons transitioning to higher-frequency oscillations relative to ventral neurons transitioning to lower-frequency oscillations. Once SMPOs showed a narrowband frequency, systematic frequency changes were not observed with further depolarization. Using a Hodgkin-Huxley-style model of membrane currents, we show that differences in the influence of depolarization on the frequency of SMPOs at different dorsal to ventral positions could arise from differences in the properties of the h current. The properties of frequency changes in this data are important for evaluating models of the generation of grid cell firing fields with different spacings along the dorsal-to-ventral axis of medial entorhinal cortex.
来自内嗅皮层中间层 II 的神经元表现出亚阈膜电位振荡 (SMPO),这可能有助于内嗅皮层的θ节律产生,并产生网格细胞放电模式。然而,目前尚不清楚单个神经元是否具有固定的独特振荡频率,或者它们的频率是否取决于细胞内的平均膜电位。因此,我们在体外检查了大鼠内嗅皮层中间层 II 星状样细胞在不同膜电位下的 SMPO 频率。使用全细胞膜片钳记录,我们发现膜电位的波动在静息电位附近表现出一个宽频带的低功率频率,随着去极化转变为更窄频带的振荡频率。从宽带到窄带频率的转变取决于神经元在沿内嗅皮层背腹轴的位置,背侧神经元相对于腹侧神经元向更高频率的振荡转变。一旦 SMPO 表现出窄频带频率,进一步去极化就不会观察到系统的频率变化。使用膜电流的 Hodgkin-Huxley 样模型,我们表明,在不同背腹位置上,去极化对 SMPO 频率的影响的差异可能源于 h 电流特性的差异。沿内嗅皮层背腹轴不同间距产生网格细胞放电场的模型中,此数据中频率变化的特性非常重要。