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Article Supra-barrel Distribution of Directional Tuning for Global Motion in the Mouse Somatosensory Cortex

机译:小鼠体感皮层中全局运动的定向上超桶分布

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Summary Rodents explore their environment with an array of whiskers, inducing complex patterns of whisker deflections. Cortical neuronal networks can extract global properties of tactile scenes. In the primary somatosensory cortex, the information relative to the global direction of a spatiotemporal sequence of whisker deflections can be extracted at the single neuron level. To further understand how the cortical network integrates multi-whisker inputs, we imaged and recorded the mouse barrel cortex activity evoked by sequences of multi-whisker deflections generating global motions in different directions. A?majority of barrel-related cortical columns show a?direction preference for global motions with an?overall preference for caudo-ventral directions. Responses to global motions being highly sublinear, the identity of the first deflected whiskers is highly salient but does not seem to determine the global direction preference. Our results further demonstrate?that the global direction preference is spatially organized throughout the barrel cortex at a supra-columnar scale.
机译:总结啮齿动物用各种各样的晶须探索环境,引起晶须偏斜的复杂模式。皮质神经元网络可以提取触觉场景的整体特性。在主要的体感皮层中,可以在单个神经元水平上提取相对于晶须偏转的时空序列的整体方向的信息。为了进一步了解皮质网络如何集成多晶须输入,我们对由多个晶须偏转序列引起的鼠标筒皮质活动进行了成像和记录,这些活动在不同方向上产生了全局运动。大部分与桶相关的皮质柱显示出对整体运动的方向偏好,而对伪腹侧方向的整体偏好。对全局运动的响应高度次线性,第一个偏转的晶须的标识非常显着,但似乎无法确定全局方向的偏好。我们的结果进一步证明?全局方向偏好在空间上组织于整个柱状皮质中,即超柱状尺度。

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