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Quantitative third-harmonic generation imaging of mouse visual cortex areas reveals correlations between functional maps and structural substrates

机译:小鼠视觉皮质区域的定量三次谐波生成成像显示功能图和结构基板之间的相关性

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摘要

The structure of brain regions is assumed to correlate with their function, but there are very few instances in which the relationship has been demonstrated in the live brain. This is due to the difficulty of simultaneously measuring functional and structural properties of brain areas, particularly at cellular resolution. Here, we performed label-free, third-harmonic generation (THG) microscopy to obtain a key structural signature of cortical areas, their effective attenuation lengths (EAL), in the vertical columns of functionally defined primary visual cortex and five adjacent visual areas in awake mice. EALs measured by THG microscopy in the cortex and white matter showed remarkable correspondence with the functional retinotopic sign map of each area. Structural features such as cytoarchitecture, myeloarchitecture and blood vessel architecture were correlated with areal EAL values, suggesting that EAL is a function of these structural features as an optical property of these areas. These results demonstrate for the first time a strong relationship between structural substrates of visual cortical areas and their functional representation maps in vivo. This study may also help in understanding the coupling between structure and function in other animal models as well as in humans.
机译:假设脑区域的结构与其功能相关,但是在活大脑中已经证明了这种关系的情况很少。这是由于难以同时测量脑区域的功能和结构性质,特别是在细胞分辨率下。这里,我们进行了无标记,三次谐波生成(THG)显微镜,以获得皮质区域的关键结构签名,它们有效衰减长度(EAL),在功能定义的主要视觉皮层和五个相邻的视觉区域的垂直列中清醒小鼠。通过THG显微镜测量的EALs在皮质和白体中测量,与每个区域的功能视网膜运动符号图显示出显着的对应关系。 CytoArchitecture,MyeloArchitecture和血管架构等结构特征与面部的值值相关,表明EAL是这些结构特征作为这些区域的光学性质的函数。这些结果首次证明了视觉皮质区域的结构基板与体内功能表示地图之间的强大关系。该研究还可以帮助理解其他动物模型以及人类的结构和功能之间的耦合。

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