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Optical intrinsic signal imaging with optogenetics reveals functional cortico-cortical connectivity at the columnar level in living macaques

机译:利用光遗传学进行光学内在信号成像,揭示了猕猴在柱状水平上的功能性皮质-皮质连通性。

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Despite extensive research on primate cognitive function, understanding how anatomical connectivity at a neural circuit level relates to information transformation across different cortical areas remains primitive. New technology is needed to visualize inter-areal anatomical connectivity in living monkeys and to tie this directly to neurophysiological function. Here, we developed a novel method to investigate this structure-function relationship, by combining optical intrinsic signal imaging (OISI) with optogenetic stimulation in living monkeys (opto-OISI). The method involves expressing channelrhodophsin-2 in one area (source) followed by optical imaging of optogenetic activations in the other area (target). We successfully demonstrated the potential of the method with interhemispheric columnar projection patterns between V1/V2 border regions. Unlike the combination of optogenetics and functional magnetic resonance imaging (opto-fMRI), opto-OISI has the advantage of enabling us to detect responses of small clusters of neurons, even if the clusters are sparsely distributed. We suggest that opto-OISI can be a powerful approach to understanding cognitive function at the neural circuit level, directly linking inter-areal circuitry to fine-scale structure and function.
机译:尽管对灵长类动物的认知功能进行了广泛的研究,但了解神经回路水平的解剖连通性如何与不同皮质区域的信息转换相关仍然是原始的。需要新技术来可视化活猴子的区域间解剖学连接并将其直接与神经生理功能联系起来。在这里,我们开发了一种新颖的方法来研究这种结构与功能的关系,方法是将光固有信号成像(OISI)与活猴子的光遗传学刺激(opto-OISI)相结合。该方法包括在一个区域(源)表达通道视紫红质-2,然后在另一区域(靶标)中进行光遗传学激活的光学成像。我们成功地用V1 / V2边界区域之间的半球柱状投影图案展示了该方法的潜力。与光遗传学和功能磁共振成像(op-fMRI)的组合不同,opo-OISI的优势是使我们能够检测神经元小簇的反应,即使簇分布稀疏。我们建议光OISI可以是一种强大的方法,以了解神经电路一级的认知功能,将区域间电路直接链接到精细的结构和功能。

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