Federated Department of Biological Sciences, Rutgers University, Newark, New Jersey 07102, USA.
J Neurosci. 2010 Aug 11;30(32):10809-19. doi: 10.1523/JNEUROSCI.1818-10.2010.
Many oscillatory networks involve neurons that exhibit intrinsic rhythmicity but possess a large variety of voltage-gated currents that interact in a complex fashion, making it difficult to determine which factors control frequency. Yet these neurons often have preferred (resonance) frequencies that can be close to the network frequency. Because the preferred frequency results from the dynamics of ionic currents, it can be assumed to depend on parameters that determine the neuron's oscillatory waveform shape. The pyloric network frequency in the crab Cancer borealis is correlated with the preferred frequency of its bursting pacemaker neurons anterior burster and pyloric dilator (PD). We measured the preferred frequency of the PD neuron in voltage clamp, which allows control of the oscillation voltage range and waveforms (sine waves and realistic oscillation waveforms), and showed that (1) the preferred frequency depends on the voltage range of the oscillating voltage waveform; (2) the slope of the waveform near its peak has a strongly negative correlation with the preferred frequency; and (3) correlations between parameters of the PD neuron oscillation waveform and its preferred frequency can be used to predict shifts in the network frequency. As predicted by these results, dynamic clamp shifts of the upper or lower voltage limits of the PD neuron waveform during ongoing oscillations changed the network frequency, consistent with the predictions from the preferred frequency. These results show that the voltage waveform of oscillatory neurons can be predictive of their preferred frequency and thus the network oscillation frequency.
许多振荡网络都涉及表现出内在节律性的神经元,但它们具有多种电压门控电流,这些电流以复杂的方式相互作用,使得难以确定哪些因素控制频率。然而,这些神经元通常具有首选(共振)频率,这些频率可能接近网络频率。由于首选频率是由离子电流的动力学决定的,因此可以假设它取决于决定神经元振荡波形形状的参数。在北美的螃蟹 Cancer borealis 中,幽门网络频率与爆发起搏神经元前爆发器(anterior burster)和幽门扩张器(pyloric dilator,PD)的首选频率相关。我们在电压钳位下测量了 PD 神经元的首选频率,这允许控制振荡电压范围和波形(正弦波和现实的振荡波形),并表明:(1)首选频率取决于振荡电压波形的电压范围;(2)波形在其峰值附近的斜率与首选频率呈强烈的负相关;(3)PD 神经元振荡波形的参数与首选频率之间的相关性可以用于预测网络频率的变化。这些结果表明,在进行中的振荡期间,PD 神经元波形的上下电压限制的动态钳位变化会改变网络频率,与首选频率的预测一致。这些结果表明,振荡神经元的电压波形可以预测其首选频率,从而预测网络振荡频率。