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Differential receptive field organizations give rise to nearly identical neural correlations across three parallel sensory maps in weakly electric fish

机译:差分接受场组织在弱电鱼中的三个平行感官图上产生几乎相同的神经相关性

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摘要

Understanding how neural populations encode sensory information thereby leading to perception and behavior (i.e., the neural code) remains an important problem in neuroscience. When investigating the neural code, one must take into account the fact that neural activities are not independent but are actually correlated with one another. Such correlations are seen ubiquitously and have a strong impact on neural coding. Here we investigated how differences in the antagonistic center-surround receptive field (RF) organization across three parallel sensory maps influence correlations between the activities of electrosensory pyramidal neurons. Using a model based on known anatomical differences in receptive field center size and overlap, we initially predicted large differences in correlated activity across the maps. However, in vivo electrophysiological recordings showed that, contrary to modeling predictions, electrosensory pyramidal neurons across all three segments displayed nearly identical correlations. To explain this surprising result, we incorporated the effects of RF surround in our model. By systematically varying both the RF surround gain and size relative to that of the RF center, we found that multiple RF structures gave rise to similar levels of correlation. In particular, incorporating known physiological differences in RF structure between the three maps in our model gave rise to similar levels of correlation. Our results show that RF center overlap alone does not determine correlations which has important implications for understanding how RF structure influences correlated neural activity.
机译:理解神经群体如何编码感觉信息从而导致知觉和行为(即神经密码)仍然是神经科学中的重要问题。在研究神经代码时,必须考虑以下事实:神经活动不是独立的,而是实际上彼此相关的。这种相关性无处不在,并且对神经编码有很大的影响。在这里,我们研究了如何在三个平行的感官图上的拮抗中心-周围感受野(RF)组织之间的差异影响电感测锥体神经元活动之间的相关性。使用基于已知场中心大小和重叠的解剖学差异的模型,我们最初预测了整个地图上相关活动的巨大差异。但是,体内电生理学记录显示,与建模预测相反,所有三个节段的电感觉锥体神经元显示出几乎相同的相关性。为了解释这一令人惊讶的结果,我们在模型中合并了RF环绕声的影响。通过系统地改变RF环绕增益和相对于RF中心的尺寸,我们发现多个RF结构产生了相似的相关度。特别是,在我们的模型中将已知的生理差异纳入三张图之间的RF结构中,会产生相似的相关程度。我们的结果表明,仅射频中心重叠并不能确定相关性,这对于理解射频结构如何影响相关的神经活动具有重要意义。

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