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Comparison of the Upper Marginal Neurons of Cortical Layer 2 with Layer 2/3 Pyramidal Neurons in Mouse Temporal Cortex

机译:小鼠颞皮质中第2层皮层和第2/3层锥体神经元的上边缘神经元的比较

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Layer 2/3 (L2/3) excitatory neurons in the neocortex make major contributions to corticocortical connections and therefore function to integrate information across cortical areas and hemispheres. Recent evidence suggests that excitatory neurons in L2/3 can have different properties. Sparse evidence from previous studies suggests that L2 neurons located at the border between L1 and L2 (referred to as L2 marginal neurons, L2MNs), have a morphology distinct from a typical pyramidal neuron. However, whether the membrane properties and input/output properties of L2MNs are different from those of typical pyramidal neurons in L2/3 is unknown. Here we addressed these questions in a slice preparation of mouse temporal cortex. We found that L2MNs were homogeneous in intrinsic membrane properties but appeared diverse in morphology. In agreement with previous studies, L2MNs either had oblique apical dendrites or had no obvious apical dendrites. The tufts of both apical and basal dendrites of these neurons invaded L1 extensively. All L2MNs showed a regular firing pattern with moderate adaptation. Compared with typical L2/3 pyramidal neurons that showed regular spiking (RS) activity (neurons), L2MNs showed a higher firing rate, larger sag ratio, and higher input resistance. No difference in the amplitude of excitatory and inhibitory postsynaptic potentials (EPSPs and IPSPs, respectively), evoked by stimulation of L1, was found between the two types of neurons, but the IPSPs in L2MNs had a slower time course than those in L2/3 RS cells. In paired recordings, unitary EPSPs showed no significant differences between synapses formed by L2MNs and those formed by L2/3 RS neurons. However, short-term synaptic depression (STSD) examined with a L2MN as the presynaptic neuron was greater when another L2MN was the postsynaptic neuron than when a L2/3 RS neuron was the postsynaptic neuron. The distinct morphological features of L2MNs found here have developmental implications, and the differences in electrophysiological properties between L2MNs and other L2/3 pyramidal neurons suggest that they play different functional roles in cortical networks.
机译:新皮层中的第2/3(L2 / 3)层兴奋性神经元对皮层皮质连接起主要作用,因此起到整合跨皮层区域和半球的信息的作用。最近的证据表明,L2 / 3中的兴奋性神经元可以具有不同的特性。先前研究的稀疏证据表明,位于L1和L2之间的边界的L2神经元(称为L2边缘神经元L2MNs)的形态不同于典型的锥体神经元。然而,L2MNs的膜特性和输入/输出特性是否与L2 / 3中典型的锥体神经元的膜特性和输入/输出特性不同尚不清楚。在这里,我们在切片小鼠颞叶皮质中解决了这些问题。我们发现,L2MNs在固有膜特性方面是均质的,但在形态上却表现出多样性。与以前的研究一致,L2MNs或具有尖的根尖树突或没有明显的根尖树突。这些神经元的顶端和基底树突的簇均侵入L1。所有的L2MNs都显示出适中的规律点火模式。与典型的L2 / 3锥体神经元显示出规律的加标(RS)活动(神经元)相比,L2MNs具有更高的发射率,更大的下垂率和更高的输入电阻。在两种神经元之间,刺激L1引起的兴奋性和抑制性突触后电位(分别为EPSPs和IPSPs)的振幅没有发现,但是L2MNs中的IPSPs的时间过程比L2 / 3中的慢。 RS细胞。在成对的记录中,单一的EPSP在L2MN形成的突触与L2 / 3 RS神经元形成的突触之间没有显着差异。但是,当另一个L2MN是突触后神经元时,以L2MN作为突触前神经元检查的短期突触抑制(STSD)比当L2 / 3 RS神经元是突触后神经元时更大。此处发现的L2MNs的独特形态特征具有发展意义,并且L2MNs和其他L2 / 3锥体神经元之间的电生理特性差异表明它们在皮层网络中发挥不同的功能。

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