Shapiro Jared T, Gosselin Emily A R, Michaud Nicole M, Crowder Nathan A
Department of Psychology and Neuroscience, Dalhousie University, Halifax, Nova Scotia B3H 4R2, Canada.
Department of Psychology and Neuroscience, Dalhousie University, Halifax, Nova Scotia B3H 4R2, Canada.
Neurosci Lett. 2022 Aug 24;786:136804. doi: 10.1016/j.neulet.2022.136804. Epub 2022 Jul 14.
In the primary visual cortex (V1) inhibitory interneurons form a local circuit with excitatory pyramidal cells to produce distinct receptive field properties. Parvalbumin-expressing interneurons (Pvalb+) are the most common subclass of V1 interneurons, and studies of orientation tuning indicate they shape pyramidal stimulus selectivity by balancing excitation with inhibition relative to the spike threshold. The iceberg effect, where subthreshold responses have broader tuning than spiking responses, predicts that other receptive field properties besides orientation tuning should also be affected by this balance mediated by Pvalb+ cells. To test this, we measured receptive field size and visual latency of pyramidal cells while Pvalb+ activity was optogenetically increased. We found that amplifying Pvalb+ input to pyramidal cells significantly increased their latency and decreased their receptive field size, which corroborates the proposed role of Pvalb+ interneurons in sculpting pyramidal tuning by controlling cortical gain.
在初级视觉皮层(V1)中,抑制性中间神经元与兴奋性锥体细胞形成局部回路,以产生独特的感受野特性。表达小白蛋白的中间神经元(Pvalb+)是V1中间神经元中最常见的亚类,对方向调谐的研究表明,它们通过相对于动作电位阈值平衡兴奋与抑制来塑造锥体神经元的刺激选择性。冰山效应表明阈下反应的调谐比动作电位反应更宽泛,这预示着除方向调谐外,其他感受野特性也应受Pvalb+细胞介导的这种平衡的影响。为了验证这一点,我们在光遗传学增强Pvalb+活性的同时,测量了锥体神经元的感受野大小和视觉潜伏期。我们发现,增强Pvalb+对锥体神经元的输入会显著增加其潜伏期并减小其感受野大小,这证实了Pvalb+中间神经元在通过控制皮层增益来塑造锥体神经元调谐方面的作用。