首页> 美国卫生研究院文献>Journal of Neurophysiology >Statistical Comparison of Spike Responses to Natural Stimuli in Monkey Area V1 With Simulated Responses of a Detailed Laminar Network Model for a Patch of V1
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Statistical Comparison of Spike Responses to Natural Stimuli in Monkey Area V1 With Simulated Responses of a Detailed Laminar Network Model for a Patch of V1

机译:V1猴子区域对自然刺激的尖峰响应与V1补丁的详细层流网络模型的模拟响应的统计比较

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摘要

A major goal of computational neuroscience is the creation of computer models for cortical areas whose response to sensory stimuli resembles that of cortical areas in vivo in important aspects. It is seldom considered whether the simulated spiking activity is realistic (in a statistical sense) in response to natural stimuli. Because certain statistical properties of spike responses were suggested to facilitate computations in the cortex, acquiring a realistic firing regimen in cortical network models might be a prerequisite for analyzing their computational functions. We present a characterization and comparison of the statistical response properties of the primary visual cortex (V1) in vivo and in silico in response to natural stimuli. We recorded from multiple electrodes in area V1 of 4 macaque monkeys and developed a large state-of-the-art network model for a 5 × 5-mm patch of V1 composed of 35,000 neurons and 3.9 million synapses that integrates previously published anatomical and physiological details. By quantitative comparison of the model response to the “statistical fingerprint” of responses in vivo, we find that our model for a patch of V1 responds to the same movie in a way which matches the statistical structure of the recorded data surprisingly well. The deviation between the firing regimen of the model and the in vivo data are on the same level as deviations among monkeys and sessions. This suggests that, despite strong simplifications and abstractions of cortical network models, they are nevertheless capable of generating realistic spiking activity. To reach a realistic firing state, it was not only necessary to include both N-methyl-d-aspartate and GABAB synaptic conductances in our model, but also to markedly increase the strength of excitatory synapses onto inhibitory neurons (>2-fold) in comparison to literature values, hinting at the importance to carefully adjust the effect of inhibition for achieving realistic dynamics in current network models.
机译:计算神经科学的主要目标是为皮质区域创建计算机模型,在重要方面,其对感觉刺激的响应类似于体内皮质区域的响应。很少考虑响应自然刺激,模拟的尖峰活动是否现实(在统计意义上)。由于建议使用尖峰响应的某些统计属性来促进皮质中的计算,因此在皮质网络模型中获得现实的发射方案可能是分析其计算功能的前提。我们提出表征和比较的主要视觉皮层(V1)在体内和计算机响应自然刺激的统计响应特性。我们从4只猕猴的V1区域的多个电极上记录下来,并为V1的5×5毫米斑块开发了一个大型的最新网络模型,该模型由35,000个神经元和390万个突触组成,整合了先前发表的解剖学和生理学细节。通过对模型响应与体内响应的“统计指纹”进行定量比较,我们发现我们的V1补丁模型对同一部电影的响应方式与记录的数据的统计结构非常吻合。该模型的发射方案与体内数据之间的偏差与猴子和试验之间的偏差处于同一水平。这表明,尽管皮质网络模型得到了极大的简化和抽象,但它们仍然能够产生逼真的峰值活动。为了达到现实的射击状态,不仅需要在模型中同时包含N-甲基-d-天冬氨酸和GABAB突触电导,而且还必须显着增加兴奋性突触在抑制性神经元上的强度(> 2倍)。与文献值的比较,暗示了在当前网络模型中仔细调整抑制效果以实现逼真的动力学的重要性。

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