Alvarez Veronica A, Chow Carson C, Van Bockstaele Elisabeth J, Williams John T
Vollum Institute, Oregon Health and Science University, Portland, OR 97201, USA.
Proc Natl Acad Sci U S A. 2002 Mar 19;99(6):4032-6. doi: 10.1073/pnas.062716299.
Electrotonic coupling synchronizes the spontaneous firing of locus ceruleus (LC) neurons in the neonatal rat brain, whereas in adults, synchronous activity is rare. This report examines the role of action potential frequency on synchronous activity in the adult LC. Decreasing the firing frequency in slices from adult animals facilitated the appearance of subthreshold oscillations and increased the correlation of the membrane potential between pairs of neurons. Conversely, increasing the firing frequency decreased the amplitude and synchrony of the oscillations among pairs. The frequency-dependent synchrony was not observed in slices from neonatal rats, where synchrony was observed at all frequencies, suggesting a developmental change in the properties of the LC network. A mathematical model confirmed that a reduction of the coupling strength among a pair of coupled neurons could generate frequency-dependent synchrony. In slices from adult animals, the combination of electrotonic coupling and firing frequency are the key elements that regulate synchronous firing in this nucleus.
电紧张耦合使新生大鼠脑内蓝斑(LC)神经元的自发放电同步,而在成年大鼠中,同步活动很少见。本报告研究了动作电位频率对成年LC同步活动的作用。降低成年动物脑片的放电频率促进了阈下振荡的出现,并增加了神经元对之间膜电位的相关性。相反,增加放电频率会降低神经元对之间振荡的幅度和同步性。在新生大鼠脑片中未观察到频率依赖性同步,新生大鼠在所有频率下均观察到同步,这表明LC网络特性发生了发育变化。一个数学模型证实,一对耦合神经元之间耦合强度的降低可产生频率依赖性同步。在成年动物脑片中,电紧张耦合和放电频率的组合是调节该核团同步放电的关键因素。