Department of Molecular and Cellular Neurobiology, Nencki Institute, Warsaw, Poland.
Behav Brain Res. 2013 Sep 1;252:293-301. doi: 10.1016/j.bbr.2013.06.022. Epub 2013 Jun 19.
The thalamocortical loop is a key player in sensory processing. We examined the functional interactions among its elements, expressed as cross-correlations between metabolic activity of the barrel cortex, somatosensory thalamic nuclei and posterior parietal cortex, in classical conditioning. In the training stimulation of vibrissae in mice was paired with a tail shock. [14C]-2-Deoxyglucose brain mapping was performed during the first and the final sessions of conditioning (conditioned stimulus+unconditioned stimulus; CS+UCS), in groups that received only the stimulation of vibrissae (conditioned stimulus; CS-only) and in nonstimulated controls (NS). In the CS-only group, the CS evoked the correlated activity of the examined structures during the first session, but in the third session these structures did not act in a correlated manner. Conversely, in the CS+UCS condition correlations among the thalamocortical loop structures activities became stronger during the course of the training. Particularly, the posterior parietal cortex, which controls voluntary deployment of attention, together with the barrel cortex becomes involved in the network of structures with the correlated activity. The results suggest a predominant role for bottom-up processing in the somatosensory pathway at the beginning of conditioning followed by top-down processing. This is consistent with the idea that the thalamocortical loop plays a crucial role in attentional processes.
丘脑皮层回路是感觉处理的关键环节。我们在经典条件作用中检查了其元素之间的功能相互作用,表现为感觉皮层、体感丘脑核和顶后皮质代谢活性之间的交叉相关。在训练刺激中,在老鼠的胡须刺激与尾部电击配对。在条件作用的第一和最后阶段(条件刺激+非条件刺激;CS+UCS)进行 [14C]-2-脱氧葡萄糖脑映射,分别在只接受胡须刺激(条件刺激;CS-only)和未刺激对照(NS)的组中进行。在 CS-only 组中,CS 在第一阶段引起了被检查结构的相关活动,但在第三阶段这些结构没有以相关方式起作用。相反,在 CS+UCS 条件下,丘脑皮层回路结构的活动之间的相关性在训练过程中增强。特别是控制自愿注意力部署的顶后皮质与感觉皮层一起参与了具有相关活动的结构网络。结果表明,在条件作用的开始阶段,感觉通路中的自下而上处理起主要作用,然后是自上而下处理。这与丘脑皮层回路在注意力过程中起着关键作用的观点一致。