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Electrophysiological Properties of CA1 Pyramidal Neurons along the Longitudinal Axis of the Mouse Hippocampus

机译:CA1锥体神经元沿小鼠海马的纵向轴的电生理特性。

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摘要

Evidence for different physiological properties along the hippocampal longitudinal axis is emerging. Here, we examined the electrophysiological features of neurons at different dorso-ventral sites of the mouse CA1 hippocampal region. Cell position was defined with respect to longitudinal coordinates of each slice. We measured variations in neuronal excitability, subthreshold membrane properties and neurotransmitter responses along the longitudinal axis. We found that (i) pyramidal cells of the dorsal hippocampus (DH) were less excitable than those of the ventral hippocampus (VH). Resting Membrane Potential (RMP) was more hyperpolarized and somatic Input Resistance (Ri) was lower in DH compared to VH. (ii) The Paired-pulse ratio (PPR) of focally induced synaptic responses was systematically reduced from the DH to the VH; (iii) Long-term-potentiation was most pronounced in the DH and fell gradually in the intermediate hippocampus and in the VH; (iv) the frequency of miniature GABAergic events was higher in the VH than in the DH; (v) the PPR of evoked inhibitory post-synaptic current (IPSC) was higher in the DH than in the VH. These findings indicate an increased probability of both GABA and glutamate release and a reduced plasticity in the ventral compared to more dorsal regions of the hippocampus.
机译:沿着海马纵轴的不同生理特性的证据正在出现。在这里,我们检查了小鼠CA1海马区的不同背腹位点神经元的电生理特征。相对于每个切片的纵向坐标定义细胞位置。我们测量了沿纵轴的神经元兴奋性,亚阈膜性质和神经递质反应的变化。我们发现(i)背海马(DH)的锥体细胞比腹侧海马(VH)的锥体细胞兴奋性低。与VH相比,DH中的静息膜电位(RMP)更极化,而体细胞输入电阻(Ri)更低。 (ii)局灶性突触反应的成对脉冲比率(PPR)从DH到VH被系统地降低; (iii)长期增效在DH中最为明显,在海马中部和VH中逐渐降低; (iv)VH中的微型GABA能事件发生频率高于DH; (v)DH中诱发的抑制性突触后电流(IPSC)的PPR高于VH。这些发现表明,与海马体背侧区域相比,GABA和谷氨酸释放的可能性增加,腹侧可塑性降低。

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