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首页> 外文期刊>Journal of Neurophysiology >Quantitative characterization of visual response properties in the mouse dorsal lateral geniculate nucleus.
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Quantitative characterization of visual response properties in the mouse dorsal lateral geniculate nucleus.

机译:小鼠背外侧膝状核的视觉反应特性的定量表征。

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摘要

We present a quantitative analysis of the visual response properties of single neurons in the dorsal lateral geniculate nucleus (dLGN) of wild-type C57Bl/6J mice. Extracellular recordings were made from single dLGN cells in mice under halothane and nitrous oxide anesthesia. After mapping the receptive fields (RFs) of these cells using reverse correlation of responses to flashed square stimuli, we used sinusoidal gratings to describe their linearity of spatial summation, spatial frequency tuning, temporal frequency tuning, and contrast response characteristics. All cells in our sample had RFs dominated by a single, roughly circular "center" mechanism that responded to either increases (ON-center) or decreases (OFF-center) in stimulus luminance, and almost all cells passed a modified null test for linearity of spatial summation. A difference of Gaussians model was used to relate spatial frequency tuning to the spatial properties of cells' RFs, revealing that mouse dLGN cells have large RFs (center diameter approximately 11 degrees) and correspondingly poor spatial resolution (approximately 0.2c/degree). Temporally, most cells in the mouse dLGN respond best to stimuli of approximately 4 Hz. We looked for evidence of parallel processing in the mouse dLGN and found it only in a functional difference between ON- and OFF-center cells: ON-center cells were more sensitive to stimulus contrast than their OFF-center neighbors.
机译:我们提出了野生型C57Bl / 6J小鼠背外侧膝状核(dLGN)中单个神经元的视觉反应特性的定量分析。在氟烷和一氧化二氮麻醉下,从小鼠的单个dLGN细胞进行细胞外记录。在使用对闪烁的方形刺激的响应的反向相关性映射这些细胞的感受野(RF)之后,我们使用正弦光栅来描述其空间求和,空间频率调整,时间频率调整和对比度响应特性的线性。我们样本中的所有单元格的RF都由单个大致圆形的“中心”机制控制,该机制对刺激亮度的增加(ON中心)或减少(OFF中心)做出响应,并且几乎所有单元格都通过了针对线性的修改后的无效测试空间总和。使用高斯模型的差异将空间频率调整与细胞RF的空间特性相关联,表明小鼠dLGN细胞具有较大的RF(中心直径约为11度)和相应的较差的空间分辨率(约0.2c /度)。暂时,小鼠dLGN中的大多数细胞对大约4 Hz的刺激反应最佳。我们寻找了在小鼠dLGN中进行并行处理的证据,并发现其仅在中心ON和中心OFF的细胞之间存在功能差异:中心ON的细胞对刺激对比的敏感性高于中心OFF的邻居。

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