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Frequency-specific coupling in fronto-parieto-occipital cortical circuits underlie active tactile discrimination

机译:额顶枕皮层回路中的特定频率耦合是主动触觉识别的基础

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摘要

Processing of tactile sensory information in rodents is critically dependent on the communication between the primary somatosensory cortex (S1) and higher-order integrative cortical areas. Here, we have simultaneously characterized single-unit activity and local field potential (LFP) dynamics in the S1, primary visual cortex (V1), anterior cingulate cortex (ACC), posterior parietal cortex (PPC), while freely moving rats performed an active tactile discrimination task. Simultaneous single unit recordings from all these cortical regions revealed statistically significant neuronal firing rate modulations during all task phases (anticipatory, discrimination, response, and reward). Meanwhile, phase analysis of pairwise LFP recordings revealed the occurrence of long-range synchronization across the sampled fronto-parieto-occipital cortical areas during tactile sampling. Causal analysis of the same pairwise recorded LFPs demonstrated the occurrence of complex dynamic interactions between cortical areas throughout the fronto-parietal-occipital loop. These interactions changed significantly between cortical regions as a function of frequencies (i.e. beta, theta and gamma) and according to the different phases of the behavioral task. Overall, these findings indicate that active tactile discrimination by rats is characterized by much more widespread and dynamic complex interactions within the fronto-parieto-occipital cortex than previously anticipated.
机译:啮齿动物中的触觉感觉信息的处理主要取决于初级体感皮质(S1)与高阶整合皮质区域之间的通信。在这里,我们同时表征了S1,初级视觉皮层(V1),前扣带回皮层(ACC),顶叶后皮层(PPC)的单单位活动和局部场电位(LFP)动态,而自由移动的大鼠则表现出活跃触觉歧视任务。在所有任务阶段(预期,区分,反应和奖赏)中,来自所有这些皮质区域的同时单个单元记录显示出统计学上显着的神经元放电速率调节。同时,成对LFP记录的相位分析显示,在触觉采样过程中,跨采样的额顶枕枕皮质区域发生了远程同步。对成对记录的LFP的因果分析表明,整个额顶叶枕环的皮质区域之间发生了复杂的动态相互作用。这些交互作用在皮质区域之间随频率(即β,θ和γ)的变化以及行为任务的不同阶段而发生了显着变化。总的来说,这些发现表明,大鼠主动触觉辨别的特征是额顶枕骨皮质内的分布和动态复杂性相互作用比以前预期的要广泛得多。

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