Tan Zhongchao, Sun Wenzhi, Chen Tsai-Wen, Kim Douglas, Ji Na
Janelia Research Campus, Howard Hughes Medical Institute, 19700 Helix Dr., Ashburn, Virginia, 20147.
Sci Rep. 2015 Jul 29;5:12597. doi: 10.1038/srep12597.
The mouse has become an important model for understanding the neural basis of visual perception. Although it has long been known that mouse lens transmits ultraviolet (UV) light and mouse opsins have absorption in the UV band, little is known about how UV visual information is processed in the mouse brain. Using a custom UV stimulation system and in vivo calcium imaging, we characterized the feature selectivity of layer 2/3 neurons in mouse primary visual cortex (V1). In adult mice, a comparable percentage of the neuronal population responds to UV and visible stimuli, with similar pattern selectivity and receptive field properties. In young mice, the orientation selectivity for UV stimuli increased steadily during development, but not direction selectivity. Our results suggest that, by expanding the spectral window through which the mouse can acquire visual information, UV sensitivity provides an important component for mouse vision.
小鼠已成为理解视觉感知神经基础的重要模型。尽管早就知道小鼠晶状体能透射紫外线(UV),且小鼠视蛋白在紫外线波段有吸收,但对于紫外线视觉信息在小鼠大脑中是如何处理的却知之甚少。我们使用定制的紫外线刺激系统和体内钙成像技术,对小鼠初级视觉皮层(V1)第2/3层神经元的特征选择性进行了表征。在成年小鼠中,相当比例的神经元群体对紫外线和可见光刺激都有反应,具有相似的模式选择性和感受野特性。在幼年小鼠中,紫外线刺激的方向选择性在发育过程中稳步增加,但方向选择性没有增加。我们的结果表明,通过扩展小鼠获取视觉信息的光谱窗口,紫外线敏感性为小鼠视觉提供了一个重要组成部分。