The type of inhibition provided by thalamic interneurons alters the input selectivity of thalamocortical neurons

Deyl Djama , Florian Zirpel , Zhiwen Ye , Gerald Moore , Charmaine Chue , Christopher Edge , Polona Jager , Alessio Delogu , Stephen G. Brickley
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Abstract

A fundamental problem in neuroscience is how neurons select for their many inputs. A common assumption is that a neuron's selectivity is largely explained by differences in excitatory synaptic input weightings. Here we describe another solution to this important problem. We show that within the first order visual thalamus, the type of inhibition provided by thalamic interneurons has the potential to alter the input selectivity of thalamocortical neurons. To do this, we developed conductance injection protocols to compare how different types of synchronous and asynchronous GABA release influence thalamocortical excitability in response to realistic patterns of retinal ganglion cell input. We show that the asynchronous GABA release associated with tonic inhibition is particularly efficient at maintaining information content, ensuring that thalamocortical neurons can distinguish between their inputs. We propose a model where alterations in GABA release properties results in rapid changes in input selectivity without requiring structural changes in the network.

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丘脑中间神经元提供的抑制类型会改变丘脑皮层神经元的输入选择性
神经科学的一个基本问题是神经元如何选择其众多输入。一个常见的假设是,神经元的选择性主要由兴奋性突触输入权重的差异来解释。在这里,我们描述了这一重要问题的另一种解决方案。我们证明,在一阶视觉丘脑中,丘脑中间神经元提供的抑制类型有可能改变丘脑皮层神经元的输入选择性。为此,我们制定了电导注射方案,以比较不同类型的同步和异步 GABA 释放如何影响丘脑皮层神经元对现实视网膜神经节细胞输入模式的兴奋性。我们的研究表明,与强直性抑制相关的异步 GABA 释放在维持信息内容方面特别有效,从而确保丘脑皮层神经元能够区分不同的输入。我们提出了一个模型,在这个模型中,GABA 释放特性的改变会导致输入选择性的快速变化,而不需要网络结构的改变。
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