首页> 外文期刊>Neuron >Locomotion, Theta Oscillations, and the Speed-Correlated Firing of Hippocampal Neurons Are Controlled by a Medial Septal Glutamatergic Circuit
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Locomotion, Theta Oscillations, and the Speed-Correlated Firing of Hippocampal Neurons Are Controlled by a Medial Septal Glutamatergic Circuit

机译:运动,θ振荡和海马神经元的速度相关的放电是由内侧间隔谷氨酸能回路控制的。

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Before the onset of locomotion, the hippocampus undergoes a transition into an activity-state specialized for the processing of spatially related input. This brain-state transition is associated with increased firing rates of CA1 pyramidal neurons and the occurrence of theta oscillations, which both correlate with locomotion velocity. However, the neural circuit by which locomotor activity is linked to hippocampal oscillations and neuronal firing rates is unresolved. Here we reveal a septo-hippocampal circuit mediated by glutamatergic (VGluT2(+)) neurons that is activated before locomotion onset and that controls the initiation and velocity of locomotion as well as the entrainment of theta oscillations. Moreover, via septo-hippocampal projections onto alveus/oriens interneurons, this circuit regulates feedforward inhibition of Schaffer collateral and perforant path input to CA1 pyramidal neurons in a locomotion-dependent manner. With higher locomotion speed, the increased activity of medial septal VGluT2 neurons is translated into increased axo-somatic depolarization and higher firing rates of CA1 pyramidal neurons.
机译:在运动开始之前,海马经历了转变为专门用于处理空间相关输入的活动状态。这种大脑状态的转变与CA1锥体神经元的放电速度增加和theta振荡的发生有关,两者均与运动速度有关。然而,运动活动与海马振荡和神经元放电率有关的神经回路尚未解决。在这里,我们揭示了由谷氨酸能(VGluT2(+))神经元介导的隔海马神经回路,该神经元在运动开始之前被激活,并控制运动的开始和速度以及theta振荡的夹带。此外,通过隔垫到海泡/中点神经元的海马突起,该电路以运动依赖的方式调节对输入到CA1锥体神经元的Schaffer侧支和穿孔路径的前馈抑制。随着运动速度的加快,内侧中隔VGluT2神经元活动的增加转化为轴突体去极化增加和CA1锥体神经元的较高放电率。

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