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Densities and Laminar Distributions of Kv3.1b- PV- GABA- and SMI-32-Immunoreactive Neurons in Macaque Area V1

机译:猕猴V1区中Kv3.1b-PV-GABA-和SMI-32-免疫反应神经元的密度和层流分布

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摘要

The Kv3.1b potassium channel subunit is associated with narrow spike widths and fast-spiking properties. In macaque primary visual cortex (V1), subsets of neurons have previously been found to be Kv3.1b-immunoreactive (ir) but not parvalbumin (PV)-ir or not GABA-ir, suggesting that they may be both fast-spiking and excitatory. This population includes Meynert cells, the large layer 5/6 pyramidal neurons that are also labeled by the neurofilament antibody SMI-32. In the present study, triple immunofluorescence labeling and confocal microscopy were used to measure the distribution of Kv3.1b-ir, non-PV-ir, non-GABA-ir neurons across cortical depth in V1, and to determine whether, like the Meynert cells, other Kv3.1b-ir excitatory neurons were also SMI-32-ir pyramidal neurons. We found that Kv3.1b-ir, non-PV-ir, non-GABA-ir neurons were most prevalent in the M pathway-associated layers 4 Cα and 4B. GABAergic neurons accounted for a smaller fraction (11%) of the total neuronal population across layers 1–6 than has previously been reported. Of Kv3.1b-ir neurons, PV expression reliably indicated GABA expression. Kv3.1b-ir, non-PV-ir neurons varied in SMI-32 coimmunoreactivity. The results suggest the existence of a heterogeneous population of excitatory neurons in macaque V1 with the potential for sustained high firing rates, and these neurons were particularly abundant in layers 4B and 4 Cα.
机译:Kv3.1b钾离子通道亚单位具有较窄的尖峰宽度和快速尖峰特性。在猕猴初级视觉皮层(V1)中,先前已经发现神经元的子集具有Kv3.1b免疫反应性(ir),但不是小白蛋白(PV)-ir或不是GABA-ir,这表明它们可能既是快速加标的又是快速加标的兴奋。该群体包括Meynert细胞,这是5/6锥体神经元的大层,也被神经丝抗体SMI-32标记。在本研究中,三重免疫荧光标记和共聚焦显微镜用于测量Kv3.1b-ir,非PV-ir,非GABA-ir神经元在V1皮质深度中的分布,并确定是否像Meynert细胞,其他Kv3.1b-ir兴奋性神经元也是SMI-32-ir锥体神经元。我们发现Kv3.1b-ir,非PV-ir,非GABA-ir神经元在与M通路相关的第4层C4和4B中最普遍。 GABA能神经元在第1到6层中占神经元总数的比例较小(11%),比以前报道的要小。在Kv3.1b-ir神经元中,PV表达可靠地表明GABA表达。 Kv3.1b-ir,非PV-ir神经元的SMI-32共免疫反应性不同。结果表明,猕猴V1中存在兴奋性神经元的异质种群,具有持续高激发率的潜力,并且这些神经元在4B和4Cα层中特别丰富。

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