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Synaptic Interactions of Late-Spiking Neocortical Neurons in Layer 1

机译:迟发新皮质神经元在第1层中的突触相互作用。

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摘要

Layer 1 of the neocortex is an important zone in which synaptic integration of inputs originating from a variety of cerebral regions is thought to take place. Layer 1 does not contain pyramidal cells, and several histochemical studies have suggested that most layer 1 neurons are GABAergic. However, although layer 1 neurons could be an important source of inhibition in this layer, the synaptic action of these neurons and the identity of their postsynaptic targets are unknown. We studied the physiological properties and synaptic interactions of a class of cells within layer 1 called late-spiking (LS) cells. The dendrites and axons of layer 1 LS cells were confined primarily to layer 1. Using paired recording, we showed that LS cells formed GABAergic connections with other LS cells as well as with non-LS cells in layer 1 and with pyramidal cells in layer 2/3. We also found that layer 2/3 pyramidal neurons provide excitatory inputs to LS cells. It has been suggested previously that GABAergic neurons belonging to the same class in the cortex are electrically coupled. In agreement with that hypothesis, we found that LS cells were interconnected by electrical coupling (83%), whereas electrical coupling between LS cells and non-LS cells was infrequent (2%). Thus, we provide evidence showing that a group of GABAergic neurons within layer 1 are specifically interconnected by electrical coupling and can provide significant inhibitory inputs to neurons in layer 1 and to distal dendrites of pyramidal cells.
机译:新大脑皮层的第1层是一个重要区域,在该区域中发生了来自各种大脑区域的输入的突触整合。第1层不包含锥体细胞,一些组织化学研究表明,大多数第1层神经元是GABA能的。但是,尽管第1层神经元可能是该层中抑制作用的重要来源,但这些神经元的突触作用及其突触后靶标的身份尚不清楚。我们研究了第1层内称为迟掺(LS)细胞的一类细胞的生理特性和突触相互作用。第1层LS细胞的树突和轴突主要限于第1层。使用配对记录,我们发现LS细胞与其他LS细胞以及第1层中的非LS细胞和第2层中的锥体细胞形成了GABA能连接/ 3。我们还发现2/3层锥体神经元为LS细胞提供了兴奋性输入。先前已经提出,皮层中属于同一类别的GABA能神经元是电耦合的。与该假设一致,我们发现LS细胞通过电耦合相互连接(83%),而LS细胞与非LS细胞之间的电耦合很少(2%)。因此,我们提供的证据表明,第1层中的一组GABA能神经元通过电耦合特异性互连,并且可以为第1层中的神经元和锥体细胞的远端树突提供重要的抑制性输入。

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