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刺激背景通过相关神经活动影响相位不变编码。

Stimulus background influences phase invariant coding by correlated neural activity.

作者信息

Metzen Michael G, Chacron Maurice J

机构信息

Department of Physiology, MGill University, Montreal, Canada.

出版信息

Elife. 2017 Mar 18;6:e24482. doi: 10.7554/eLife.24482.

Abstract

Previously we reported that correlations between the activities of peripheral afferents mediate a phase invariant representation of natural communication stimuli that is refined across successive processing stages thereby leading to perception and behavior in the weakly electric fish (Metzen et al., 2016). Here, we explore how phase invariant coding and perception of natural communication stimuli are affected by changes in the sinusoidal background over which they occur. We found that increasing background frequency led to phase locking, which decreased both detectability and phase invariant coding. Correlated afferent activity was a much better predictor of behavior as assessed from both invariance and detectability than single neuron activity. Thus, our results provide not only further evidence that correlated activity likely determines perception of natural communication signals, but also a novel explanation as to why these preferentially occur on top of low frequency as well as low-intensity sinusoidal backgrounds.

摘要

此前我们报道过,外周传入神经活动之间的相关性介导了自然通讯刺激的相位不变表征,该表征在连续的处理阶段中得到细化,从而在弱电鱼中产生感知和行为(梅岑等人,2016年)。在这里,我们探讨自然通讯刺激的相位不变编码和感知如何受到其出现时的正弦背景变化的影响。我们发现,背景频率增加会导致相位锁定,这会降低可检测性和相位不变编码。与单个神经元活动相比,从不变性和可检测性评估来看,相关传入神经活动是行为的更好预测指标。因此,我们的结果不仅进一步证明相关活动可能决定对自然通讯信号的感知,还对这些信号为何优先出现在低频以及低强度正弦背景之上提供了一种新的解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c6a/5389862/9c326c6ff434/elife-24482-fig1.jpg

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