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Lateralization of responses to vibrissal stimulation: Connectivity and information integration in the rat sensory-motor cortex assessed with fMRI

机译:对振动刺激反应的侧向化:通过功能磁共振成像评估大鼠感觉运动皮层的连通性和信息整合

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Rats move their whiskers or vibrissae to gain sensory information about the world surrounding them. A single whisker can work as an independent detector but normal whisking involves the use of several vibrissae in a bilateral fashion. Here we used blood oxygen level dependent (BOLD) contrast to acquire functional magnetic resonance images (fMRI) of the rat brain activity during uni- and bilateral whisker stimulations with different timing schemes under Isoflurane anesthesia. Experiments were performed to assess the integration of bilateral information produced by normal whisking behavior. First, we showed that it was possible to obtain BOLD whisker activations using Isoflurane harmless for the animals and thus allowing for future repetitive/longitudinal studies. Second, we obtained different BOLD activation patterns depending on the number of stimulated whiskers and timing of the stimulation scheme. Third, we found lateralization of BOLD activations in the somatosensory-motor cortex. It manifested itself in considerably larger activations in the right hemisphere during equal bilateral whisker stimulation. Fourth, we found Granger Causality Analysis (GCA) to be a useful tool in information integration analysis, as it reproduced the stimulus specific Cross-correlation Analysis results. Both analyses showed that the amount of whiskers stimulated and the timing of stimulation lead to specific dynamic connectivity patterns. Finally, by adding directionality information GCA revealed meaningful lateralization of information processing in the rat whisker system consistent with the observed BOLD activation patterns.
机译:老鼠移动胡须或触须,以获取有关其周围世界的感官信息。单个晶须可以充当独立的检测器,但正常晶须需要以双边方式使用多个触须。在这里,我们使用血氧水平依赖性(BOLD)对比来获取异氟烷麻醉下不同定时方案的单侧和双侧晶须刺激期间大鼠大脑活动的功能磁共振图像(fMRI)。进行实验以评估正常搅拌行为产生的双边信息的整合。首先,我们表明使用异氟烷对动物无害地获得BOLD晶须活化是可能的,因此可以用于将来的重复/纵向研究。其次,我们根据受激晶须的数量和刺激方案的时机获得了不同的BOLD激活模式。第三,我们在体感运动皮层中发现了BOLD激活的侧向化。它表现为在相等的双侧晶须刺激过程中右半球的激活作用明显增强。第四,我们发现格兰杰因果关系分析(GCA)是信息集成分析中的有用工具,因为它再现了刺激特定的互相关分析结果。两项分析均显示,受晶须刺激的数量以及刺激的时间安排导致特定的动态连接方式。最后,通过添加方向性信息,GCA揭示了大鼠晶须系统中信息处理的有意义的侧向化,与观察到的BOLD激活模式一致。

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