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小鼠视觉皮层中的群体编码:刺激调谐和噪声相关的反应可靠性和可分离性。

Population coding in mouse visual cortex: response reliability and dissociability of stimulus tuning and noise correlation.

机构信息

Cognitive and Systems Neuroscience, Faculty of Science, Center for Neuroscience, Swammerdam Institute for Life Sciences, University of Amsterdam Amsterdam, Netherlands.

Cognitive and Systems Neuroscience, Faculty of Science, Center for Neuroscience, Swammerdam Institute for Life Sciences, University of Amsterdam Amsterdam, Netherlands ; Research Priority Program Brain and Cognition, University of Amsterdam Amsterdam, Netherlands.

出版信息

Front Comput Neurosci. 2014 Jun 2;8:58. doi: 10.3389/fncom.2014.00058. eCollection 2014.

Abstract

The primary visual cortex is an excellent model system for investigating how neuronal populations encode information, because of well-documented relationships between stimulus characteristics and neuronal activation patterns. We used two-photon calcium imaging data to relate the performance of different methods for studying population coding (population vectors, template matching, and Bayesian decoding algorithms) to their underlying assumptions. We show that the variability of neuronal responses may hamper the decoding of population activity, and that a normalization to correct for this variability may be of critical importance for correct decoding of population activity. Second, by comparing noise correlations and stimulus tuning we find that these properties have dissociated anatomical correlates, even though noise correlations have been previously hypothesized to reflect common synaptic input. We hypothesize that noise correlations arise from large non-specific increases in spiking activity acting on many weak synapses simultaneously, while neuronal stimulus response properties are dependent on more reliable connections. Finally, this paper provides practical guidelines for further research on population coding and shows that population coding cannot be approximated by a simple summation of inputs, but is heavily influenced by factors such as input reliability and noise correlation structure.

摘要

初级视皮层是研究神经元群体如何编码信息的理想模型系统,因为刺激特征与神经元激活模式之间存在着有据可查的关系。我们使用双光子钙成像数据,将研究群体编码的不同方法(群体向量、模板匹配和贝叶斯解码算法)的性能与其基本假设联系起来。我们表明,神经元反应的可变性可能会阻碍对群体活动的解码,而对这种可变性进行归一化以进行正确的群体活动解码可能是至关重要的。其次,通过比较噪声相关性和刺激调谐,我们发现这些特性具有分离的解剖学相关性,尽管噪声相关性以前被假设反映了共同的突触输入。我们假设噪声相关性源于大量非特异性的尖峰活动增加,同时作用于许多弱突触,而神经元的刺激反应特性则依赖于更可靠的连接。最后,本文为进一步研究群体编码提供了实用的指导方针,并表明群体编码不能通过简单地对输入进行求和来近似,而是受到输入可靠性和噪声相关结构等因素的强烈影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e47/4040453/5f18dae3ac5a/fncom-08-00058-g0001.jpg

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