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Identification of Eye-Specific Domains and Their Relation to Callosal Connections in Primary Visual Cortex of Long Evans Rats

机译:长Evans大鼠初级视皮层眼特定域的识别及其与Call连接的关系

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摘要

Ocular dominance columns (ODCs) exist in many primates and carnivores, but it is believed that they do not exist in rodents. Using a combination of transneuronal tracing, in situ hybridization for Zif268 and electrophysiological recordings, we show that inputs from both eyes are largely segregated in the binocular region of V1 in Long Evans rats. We also show that, interposed between this binocular region and the lateral border of V1, there lies a strip of cortex that is strongly dominated by the contralateral eye. Finally, we show that callosal connections colocalize primarily with ipsilateral eye domains in the binocular region and with contralateral eye input in the lateral cortical strip, mirroring the relationship between patchy callosal connections and specific sets of ODCs described previously in the cat. Our results suggest that development of cortical modular architecture is more conserved among rodents, carnivores, and primates than previously thought.
机译:眼优势柱(ODC)存在于许多灵长类和食肉动物中,但据信它们不存在于啮齿动物中。使用跨神经元描记,Zif268的原位杂交和电生理记录的组合,我们显示在Long Evans大鼠中,两只眼睛的输入大部分隔离在V1的双眼区域。我们还显示,在此双目区域和V1的侧边界之间,存在一条由对侧眼强烈控制的皮质带。最后,我们显示call骨连接主要与双眼区的同侧眼域和外侧皮质带中的对侧眼输入共定位,从而反映出斑块状的al骨连接与先前在猫中描述的特定ODC集之间的关系。我们的结果表明,与以前认为的相比,在啮齿动物,食肉动物和灵长类动物中皮质模块化结构的开发更为保守。

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