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首页> 外文期刊>The Journal of Comparative Neurology >Cortical and thalamic connectivity of temporal visual cortical areas 20a and 20b of the domestic ferret ( Mustela putorius furo Mustela putorius furo )
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Cortical and thalamic connectivity of temporal visual cortical areas 20a and 20b of the domestic ferret ( Mustela putorius furo Mustela putorius furo )

机译:国内雪貂的颞视觉皮质区域20a和20b的皮质和丘脑连接(Mustela putorius furo mustela putorius furo)

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Abstract The present study describes the ipsilateral and contralateral corticocortical and corticothalamic connectivity of the temporal visual areas 20a and 20b in the ferret using standard anatomical tract‐tracing methods. The two temporal visual areas are strongly interconnected, but area 20a is primarily connected to the occipital visual areas, whereas area 20b maintains more widespread connections with the occipital, parietal and suprasylvian visual areas and the secondary auditory cortex. The callosal connectivity, although homotopic, consists mainly of very weak anterograde labeling which was more widespread in area 20a than area 20b. Although areas 20a and 20b are well connected with the visual dorsal thalamus, the injection into area 20a resulted in more anterograde label, whereas more retrograde label was observed in the visual thalamus following the injection into area 20b. Most interestingly, comparisons to previous connectional studies of cat areas 20a and 20b reveal a common pattern of connectivity of the temporal visual cortex in carnivores, where the posterior parietal cortex and the central temporal region (PMLS) provide network points required for dorsal and ventral stream interaction enroute to integration in the prefrontal cortex. This pattern of network connectivity is not dissimilar to that observed in primates, which highlights the ferret as a useful animal model to understand visual sensory integration between the dorsal and ventral streams. The data generated will also contribute to a connectomics database, to facilitate cross species analysis of brain connectomes and wiring principles of the brain.
机译:摘要本研究描述了使用标准解剖学追踪方法在雪貂中的时间视觉区域20a和20b的同侧和对侧皮质皮质和皮质植物连接性。两个时间视觉区域是强烈互连的,但区域20A主要连接到枕骨视觉区域,而区域20B与枕骨,间位和Supracalvian视觉区域和二级听觉皮质保持更广泛的连接。呼叫连接虽然同型同型,但主要是非常弱的伪造标记,其在20A区域20A中更广泛地普及。尽管20A和20B的区域与视觉背侧丘脑连接良好,但注射到区域20A中导致更多的胎盘标签,而在注射到区域20B之后在视觉丘脑中观察到更多的逆行标签。最有意思地,对猫区20A和20B的先前连接研究的比较揭示了肉食病毒中颞视觉皮质的常见连接模式,其中后剖视图和中央颞区(PMLS)提供了背部和腹部流所需的网络点相互作用途径在前额叶皮质中的整合。这种网络连接模式与灵长类动物观察到的这种模式不相似,这突出了雪貂作为有用的动物模型,以了解背部和腹部流之间的视觉感觉集成。生成的数据也将有助于Connectomics数据库,以促进脑Connectomes的交叉种类分析和大脑的接线原理。

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