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Frequency-selective augmenting responses by short-term synaptic depression in cat neocortex

机译:猫新皮层的短期突触抑制对频率的选择性增强反应

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摘要

Thalamic stimulation at frequencies between 5 and 15 Hz elicits incremental or ‘augmenting’ cortical responses. Augmenting responses can also be evoked in cortical slices and isolated cortical slabs in vivo. Here we show that a realistic network model of cortical pyramidal cells and interneurones including short-term plasticity of inhibitory and excitatory synapses replicates the main features of augmenting responses as obtained in isolated slabs in vivo. Repetitive stimulation of synaptic inputs at frequencies around 10 Hz produced postsynaptic potentials that grew in size and carried an increasing number of action potentials resulting from the depression of inhibitory synaptic currents. Frequency selectivity was obtained through the relatively weak depression of inhibitory synapses at low frequencies, and strong depression of excitatory synapses together with activation of a calcium-activated potassium current at high frequencies. This network resonance is a consequence of short-term synaptic plasticity in a network of neurones without intrinsic resonances. These results suggest that short-term plasticity of cortical synapses could shape the dynamics of synchronized oscillations in the brain.
机译:丘脑在5到15 Hz的频率刺激会引起皮质反应的增加或“增强”。还可以在体内的皮质切片和孤立的皮质平板中诱发增强反应。在这里,我们显示了一个现实的皮质锥体细胞和interneurones的网络模型,包括抑制性和兴奋性突触的短期可塑性,复制了在体内分离的平板中获得增强反应的主要特征。在10 Hz左右的频率上重复刺激突触输入会产生突触后电位,其大小会增加,并且由于抑制性突触电流的降低,携带的动作电位会增加。通过在较低频率下抑制突触的相对较弱的抑制,以及在较高频率下激活突触的强烈抑制以及激活钙激活的钾电流,可以获得频率选择性。这种网络共振是神经元网络中短期突触可塑性的结果,而没有固有共振。这些结果表明,皮质突触的短期可塑性可能会影响大脑同步振荡的动力学。

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