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A DCM study of spectral asymmetries in feedforward and feedback connections between visual areas V1 and V4 in the monkey.

机译:DCM研究猴子视觉区域V1和V4之间的前馈和反馈连接中的光谱不对称性。

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摘要

This paper reports a dynamic causal modeling study of electrocorticographic (ECoG) data that addresses functional asymmetries between forward and backward connections in the visual cortical hierarchy. Specifically, we ask whether forward connections employ gamma-band frequencies, while backward connections preferentially use lower (beta-band) frequencies. We addressed this question by modeling empirical cross spectra using a neural mass model equipped with superficial and deep pyramidal cell populations-that model the source of forward and backward connections, respectively. This enabled us to reconstruct the transfer functions and associated spectra of specific subpopulations within cortical sources. We first established that Bayesian model comparison was able to discriminate between forward and backward connections, defined in terms of their cells of origin. We then confirmed that model selection was able to identify extrastriate (V4) sources as being hierarchically higher than early visual (V1) sources. Finally, an examination of the auto spectra and transfer functions associated with superficial and deep pyramidal cells confirmed that forward connections employed predominantly higher (gamma) frequencies, while backward connections were mediated by lower (alpha/beta) frequencies. We discuss these findings in relation to current views about alpha, beta, and gamma oscillations and predictive coding in the brain.
机译:本文报告了一项动态的脑电图(ECoG)数据因果模型研究,该数据解决了视觉皮层层次结构中向前和向后连接之间的功能不对称性。具体来说,我们询问前向连接是否使用伽马频带频率,而后向连接是否优先使用较低(贝塔频带)频率。我们通过使用配备了浅表和深锥体细胞种群的神经质量模型对经验交叉谱进行建模来解决此问题,该模型分别对正向和反向连接的源进行建模。这使我们能够重建皮层源中特定亚群的传递函数和相关光谱。我们首先确定贝叶斯模型比较能够区分正向和反向连接,并根据它们的起源单元进行定义。然后,我们确认了模型选择能够识别出层次上高于早期视觉(V1)来源的外提物(V4)来源。最后,对与浅表和深金字塔形细胞相关的自动光谱和传递函数的检查证实,前向连接主要使用较高的(gamma)频率,而后向连接则由较低的(alpha / beta)频率介导。我们讨论这些发现与当前有关α,β和γ振荡以及大脑中预测编码的观点有关。

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