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通过猫视觉皮层同步活动的调制检测视觉刺激中空间完整性的解构。

Deconstruction of spatial integrity in visual stimulus detected by modulation of synchronized activity in cat visual cortex.

作者信息

Zhou Zhiyi, Bernard Melanie R, Bonds A B

机构信息

Department of Biomedical Engineering, Vanderbilt University, Nashville, Tennessee 37235, USA.

出版信息

J Neurosci. 2008 Apr 2;28(14):3759-68. doi: 10.1523/JNEUROSCI.4481-07.2008.

DOI:10.1523/JNEUROSCI.4481-07.2008
PMID:18385334
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6671082/
Abstract

Spatiotemporal relationships among contour segments can influence synchronization of neural responses in the primary visual cortex. We performed a systematic study to dissociate the impact of spatial and temporal factors in the signaling of contour integration via synchrony. In addition, we characterized the temporal evolution of this process to clarify potential underlying mechanisms. With a 10 x 10 microelectrode array, we recorded the simultaneous activity of multiple cells in the cat primary visual cortex while stimulating with drifting sine-wave gratings. We preserved temporal integrity and systematically degraded spatial integrity of the sine-wave gratings by adding spatial noise. Neural synchronization was analyzed in the time and frequency domains by conducting cross-correlation and coherence analyses. The general association between neural spike trains depends strongly on spatial integrity, with coherence in the gamma band (35-70 Hz) showing greater sensitivity to the change of spatial structure than other frequency bands. Analysis of the temporal dynamics of synchronization in both time and frequency domains suggests that spike timing synchronization is triggered nearly instantaneously by coherent structure in the stimuli, whereas frequency-specific oscillatory components develop more slowly, presumably through network interactions. Our results suggest that, whereas temporal integrity is required for the generation of synchrony, spatial integrity is critical in triggering subsequent gamma band synchronization.

摘要

轮廓片段之间的时空关系会影响初级视觉皮层中神经反应的同步性。我们进行了一项系统研究,以区分空间和时间因素在通过同步进行轮廓整合信号传递中的影响。此外,我们对这一过程的时间演变进行了表征,以阐明潜在的机制。我们使用一个10×10的微电极阵列,在猫的初级视觉皮层中记录多个细胞的同步活动,同时用漂移的正弦波光栅进行刺激。我们通过添加空间噪声来保持时间完整性并系统地降低正弦波光栅的空间完整性。通过进行互相关和相干分析,在时域和频域中分析神经同步性。神经脉冲序列之间的一般关联强烈依赖于空间完整性,γ波段(35 - 70赫兹)的相干性对空间结构变化的敏感性高于其他频段。对时域和频域中同步性的时间动态分析表明,脉冲时间同步几乎是由刺激中的相干结构瞬间触发的,而特定频率的振荡成分发展得更慢,大概是通过网络相互作用。我们的结果表明,虽然同步性的产生需要时间完整性,但空间完整性对于触发随后的γ波段同步至关重要。

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