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Local homogeneity of tonotopic organization in the primary auditory cortex of marmosets

机译:mos猴初级听觉皮层局部性组织的同质性

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摘要

Marmoset has emerged as a useful nonhuman primate species for studying brain structure and function. Previous studies on the mouse primary auditory cortex (A1) showed that neurons with preferential frequency-tuning responses are mixed within local cortical regions, despite a large-scale tonotopic organization. Here we found that frequency-tuning properties of marmoset A1 neurons are highly uniform within local cortical regions. We first defined the tonotopic map of A1 using intrinsic optical imaging and then used in vivo two-photon calcium imaging of large neuronal populations to examine the tonotopic preference at the single-cell level. We found that tuning preferences of layer 2/3 neurons were highly homogeneous over hundreds of micrometers in both horizontal and vertical directions. Thus, marmoset A1 neurons are distributed in a tonotopic manner at both macro- and microscopic levels. Such organization is likely to be important for the organization of auditory circuits in the primate brain.
机译:mo猴已经成为研究大脑结构和功能的有用的非人类灵长类动物。先前对小鼠原发性听觉皮层(A1)的研究表明,尽管存在大规模的tonotopic组织,但具有优先频率调谐响应的神经元仍在局部皮质区域内混合。在这里,我们发现mar猴A1神经元的频率调谐特性在局部皮质区域内高度均匀。我们首先使用内在的光学成像定义了A1的Tonotopic定位图,然后使用大神经元群​​体的体内双光子钙成像来检查单细胞水平的Tonotopic偏好。我们发现,第2/3层神经元的调整偏好在水平和垂直方向上都超过数百微米,是高度均匀的。因此,mar猴A1神经元在宏观和微观水平上都以色调的方式分布。这种组织对于灵长类脑中听觉回路的组织可能很重要。

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