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Resonance (∼10 Hz) of excitatory networks in motor cortex: effects of voltage-dependent ion channel blockers

机译:运动皮层中兴奋性网络的共振(〜10 Hz):依赖电压的离子通道阻滞剂的作用

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摘要

The motor cortex generates synchronous network oscillations at frequencies between 7 and 14 Hz during disinhibition or low [Mg2+]o buffers, but the underlying mechanisms are poorly understood. These oscillations, termed here ∼10 Hz oscillations, are generated by a purely excitatory network of interconnected pyramidal cells because they are robust in the absence of GABAergic transmission. It is likely that specific voltage-dependent currents expressed in those cells contribute to the generation of ∼10 Hz oscillations. We tested the effects of different drugs known to suppress certain voltage-dependent currents. The results revealed that drugs that suppress the low-threshold calcium current and the hyperpolarization-activated cation current are not critically involved in the generation of ∼10 Hz oscillations. Interestingly, drugs known to suppress the persistent sodium current abolished ∼10 Hz oscillations. Furthermore, blockers of K+ channels had significant effects on the oscillations. In particular, blockers of the M-current abolished the oscillations. Also, blockers of both non-inactivating and slowly inactivating voltage-dependent K+ currents abolished ∼10 Hz oscillations. The results indicate that specific voltage-dependent non-inactivating K+ currents, such as the M-current, and persistent sodium currents are critically involved in generating ∼10 Hz oscillations of excitatory motor cortex networks.
机译:在去抑制或低[Mg 2 + ] o缓冲液期间,运动皮层会在7至14 Hz的频率上产生同步网络振荡,但其潜在机制尚不清楚。这些振荡,这里称为〜10 Hz振荡,是由相互连接的锥体细胞的纯兴奋性网络产生的,因为它们在不存在GABA能传递的情况下具有鲁棒性。这些电池中表达的特定于电压的电流很可能会导致〜10 Hz振荡的产生。我们测试了已知可以抑制某些电压依赖性电流的不同药物的作用。结果表明,抑制低阈值钙电流和超极化激活的阳离子电流的药物并不关键地参与〜10 Hz振荡的产生。有趣的是,已知抑制持续钠电流的药物消除了约10 Hz的振荡。此外,K + 通道的阻滞剂对振荡有显着影响。特别是,M电流的阻断器消除了振荡。同样,非灭活和缓慢灭活依赖电压的K + 电流的阻断剂消除了约10 Hz的振荡。结果表明,特定的电压依赖性非灭活K + 电流(例如M电流)和持续的钠电流在激发性运动皮层网络的〜10 Hz振荡中至关重要。

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