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大鼠新皮质中感觉诱发活动和自发活动的跨模态传播。

Crossmodal propagation of sensory-evoked and spontaneous activity in the rat neocortex.

作者信息

Takagaki Kentaroh, Zhang Chuan, Wu Jian-Young, Lippert Michael Thomas

机构信息

Department of Physiology and Biophysics, Georgetown University, Washington, DC 20057, United States.

出版信息

Neurosci Lett. 2008 Feb 6;431(3):191-6. doi: 10.1016/j.neulet.2007.11.069. Epub 2007 Dec 15.

Abstract

In the cortex, neural responses to crossmodal stimulation are seen both in higher association areas and in primary sensory areas, and are thought to play a role in integration of crossmodal sensations. We used voltage-sensitive dye imaging (VSDI) to study the spatiotemporal characteristics of such crossmodal neural activity. We imaged three cortical regions in rat: primary visual cortex (V1), barrel field of primary somatosensory cortex (S1bf) and parietal association area (PA, flanked by V1 and S1bf). We find that sensory-evoked population activity can propagate in the form of a distinct propagating wave, robustly in either crossmodal direction. In single trials, the waveforms changed continuously during propagation, with dynamic variability from trial to trial, which we interpret as evidence for cortical involvement in the spreading process. To further characterize the functional anatomy of PA, we also studied the propagation of spontaneous sleep-like waves in this area. Using a novel flow-detection algorithm, we detected a propagation bias within PA of spontaneous waves--these tend to propagate parallel to the crossmodal axis, rather than orthogonal to it. Taken together, these findings demonstrate that intracortical networks show pre-attentive crossmodal propagation of activity, and suggest a potential mechanism for the establishment of crossmodal integration.

摘要

在皮层中,对跨模态刺激的神经反应可见于高级联合区域和初级感觉区域,并且被认为在跨模态感觉的整合中发挥作用。我们使用电压敏感染料成像(VSDI)来研究这种跨模态神经活动的时空特征。我们对大鼠的三个皮层区域进行成像:初级视觉皮层(V1)、初级体感皮层的桶状区(S1bf)和顶叶联合区(PA,位于V1和S1bf之间)。我们发现,感觉诱发的群体活动能够以一种独特的传播波形式传播,在任何一个跨模态方向上都很稳健。在单次试验中,波形在传播过程中持续变化,每次试验之间存在动态变异性,我们将其解释为皮层参与传播过程的证据。为了进一步描述PA的功能解剖结构,我们还研究了该区域自发睡眠样波的传播。使用一种新颖的流检测算法,我们检测到PA内自发波的传播偏向——这些波倾向于平行于跨模态轴传播,而不是与其正交。综上所述,这些发现表明皮层内网络显示出活动的前注意跨模态传播,并提示了一种建立跨模态整合的潜在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00f4/2292672/e9de07daf58c/nihms44620f1.jpg

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