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Sensory Processing: Functional characterization and spatial clustering of visual cortical neurons in the predatory grasshopper mouse Onychomys arenicola

机译:感官加工:掠食性蚱mouse小鼠灰指甲的视觉皮质神经元的功能表征和空间聚集。

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摘要

Mammalian neocortical circuits are functionally organized such that the selectivity of individual neurons systematically shifts across the cortical surface, forming a continuous map. Maps of the sensory space exist in cortex, such as retinotopic maps in the visual system or tonotopic maps in the auditory system, but other functional response properties also may be similarly organized. For example, many carnivores and primates possess a map for orientation selectivity in primary visual cortex (V1), whereas mice, rabbits, and the gray squirrel lack orientation maps. In this report we show that a carnivorous rodent with predatory behaviors, the grasshopper mouse (Onychomys arenicola), lacks a canonical columnar organization of orientation preference in V1; however, neighboring neurons within 50 μm exhibit related tuning preference. Using a combination of two-photon microscopy and extracellular electrophysiology, we demonstrate that the functional organization of visual cortical neurons in the grasshopper mouse is largely the same as in the C57/BL6 laboratory mouse. We also find similarity in the selectivity for stimulus orientation, direction, and spatial frequency. Our results suggest that the properties of V1 neurons across rodent species are largely conserved.>NEW & NOTEWORTHY Carnivores and primates possess a map for orientation selectivity in primary visual cortex (V1), whereas rodents and lagomorphs lack this organization. We examine, for the first time, V1 of a wild carnivorous rodent with predatory behaviors, the grasshopper mouse (Onychomys arenicola). We demonstrate the cellular organization of V1 in the grasshopper mouse is largely the same as the C57/BL6 laboratory mouse, suggesting that V1 neuron properties across rodent species are largely conserved.
机译:哺乳动物新皮层回路的功能组织使得单个神经元的选择性在整个皮层表面发生系统性移动,从而形成连续图。感觉空间的图存在于皮质中,例如视觉系统中的视网膜位图或听觉系统中的色调图,但是其他功能响应特性也可以类似地组织。例如,许多食肉动物和灵长类动物在初级视觉皮层(V1)中具有定向选择性的图,而小鼠,兔子和灰松鼠则缺乏定向图。在本报告中,我们显示了一种具有掠食性行为的食肉性啮齿动物,即蚱mouse鼠(Onychomys arenicola),在V1中缺少典型的方向性柱状组织。然而,在50μm范围内的相邻神经元表现出相关的调整偏好。结合使用双光子显微镜和细胞外电生理学,我们证明了蚱mouse小鼠中视觉皮层神经元的功能组织与C57 / BL6实验室小鼠基本相同。我们还发现刺激方向,方向和空间频率的选择性相似。我们的研究结果表明,整个啮齿动物物种的V1神经元的特性都得到了保守。 。我们首次检查了具有食肉行为的野生食肉啮齿动物蚱,小鼠(Onychomys arenicola)的V1。我们证明蚱hopper小鼠中V1的细胞组织与C57 / BL6实验室小鼠基本相同,这表明跨啮齿类动物的V1神经元特性在很大程度上是保守的。

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