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Prefrontal Microcircuits: Membrane Properties and Excitatory Input of Local Medium and Wide Arbor Interneurons

机译:前额微电路:局部中型和宽乔木interneurons的膜特性和兴奋性输入。

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摘要

To elucidate cortical mechanisms involved in higher cortical functions such as working memory, we have examined feedforward excitation transmitted by identified pyramidal cells to interneurons with predominantly horizontal axonal arbors, using dual somatic recordings in prefrontal cortical slices. Interneurons with local (narrow) axonal arbors, especially chandelier interneurons, exhibited extremely narrow action potentials and high evoked firing rates, whereas neurons identified with wide arbor axons generated wider spikes and lower evoked firing rates with considerable spike adaptation, resembling that of pyramidal cells. Full reconstruction of differentially labeled neuronal pairs revealed that local arbor cells generally received a single but functionally reliable putative synaptic input from the identified pyramidal neuron member of the pair. In contrast, more synapses (two to five) were necessary to depolarize medium and wide arbor neurons reliably. The number of putative synapses and the amplitude of the postsynaptic response were remarkably highly correlated within each class of local, medium, and wide arbor interneurons (r = 0.88, 0.95, and 0.99, respectively). Similarly strong correlations within these subgroups were also present between the number of putative synapses and variance in the EPSP amplitudes, supporting the validity of our morphological analysis. We conclude that interneurons varying in the span of their axonal arbors and hence in the potential regulation of different numbers of cortical modules differ also in their excitatory synaptic input and physiological properties. These findings provide insight into the circuit basis of lateral inhibition and functional interactions within and between cortical columns in the cerebral cortex.
机译:为了阐明涉及较高皮质功能(例如工作记忆)的皮质机制,我们使用前额叶皮质切片中的双重体细胞记录,研究了由识别的锥体细胞传输至主要为水平轴突轴突的中间神经元的前馈激发。具有局部(狭窄)轴突轴突的中间神经元,尤其是枝形吊灯的中间神经元,表现出极窄的动作电位和较高的诱发放电速率,而以宽乔树轴突识别的神经元产生较宽的尖峰和较低的诱发放电速率,具有相当大的尖峰适应性,类似于锥体细胞。差异标记神经元对的完全重建显示,本地乔木细胞通常从该对中识别的锥体神经元成员接收到一个单一的但功能上可靠的假定突触输入。相反,需要更多的突触(2至5个)才能可靠地使中等和宽乔神经元去极化。假定的突触的数量和突触后反应的幅度在每类局部,中等和较宽的乔木中间神经元之间都高度相关(分别为r = 0.88、0.95和0.99)。类似地,这些亚组内的强突触数量和EPSP振幅方差之间也存在强相关性,这支持了我们的形态学分析的有效性。我们得出的结论是,中间神经元在其轴突柄的跨度中变化,因此在不同数量的皮质模块的潜在调控中,其兴奋性突触输入和生理特性也不同。这些发现为深入了解大脑皮层皮质柱内和之间的横向抑制和功能相互作用的回路基础提供了见识。

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