Department of Neurobiology, and Interdepartmental Neuroscience Program, Northwestern University, Evanston, Illinois 60208, USA.
J Neurosci. 2013 Jul 31;33(31):12751-63. doi: 10.1523/JNEUROSCI.0095-13.2013.
The dorsal lateral geniculate nucleus (dLGN) receives visual information from the retina and transmits it to the cortex. In this study, we made extracellular recordings in the dLGN of both anesthetized and awake mice, and found that a surprisingly high proportion of cells were selective for stimulus orientation. The orientation selectivity of dLGN cells was unchanged after silencing the visual cortex pharmacologically, indicating that it is not due to cortical feedback. The orientation tuning of some dLGN cells correlated with their elongated receptive fields, while in others orientation selectivity was observed despite the fact that their receptive fields were circular, suggesting that their retinal input might already be orientation selective. Consistently, we revealed orientation/axis-selective ganglion cells in the mouse retina using multielectrode arrays in an in vitro preparation. Furthermore, the orientation tuning of dLGN cells was largely maintained at different stimulus contrasts, which could be sufficiently explained by a simple linear feedforward model. We also compared the degree of orientation selectivity in different visual structures under the same recording condition. Compared with the dLGN, orientation selectivity is greatly improved in the visual cortex, but is similar in the superior colliculus, another major retinal target. Together, our results demonstrate prominent orientation selectivity in the mouse dLGN, which may potentially contribute to visual processing in the cortex.
背外侧膝状体核(dLGN)接收来自视网膜的视觉信息,并将其传输到皮层。在这项研究中,我们在麻醉和清醒的小鼠的 dLGN 中进行了细胞外记录,发现相当高比例的细胞对刺激方向具有选择性。用药物沉默视皮层后,dLGN 细胞的方向选择性没有改变,表明这不是由于皮层反馈。一些 dLGN 细胞的方向调谐与其细长的感受野有关,而在其他细胞中,尽管它们的感受野是圆形的,但仍观察到方向选择性,这表明它们的视网膜输入可能已经具有方向选择性。一致地,我们在体外培养的多电极阵列中揭示了小鼠视网膜中的方向/轴选择性节细胞。此外,dLGN 细胞的方向调谐在不同的刺激对比度下基本保持不变,这可以用简单的线性前馈模型很好地解释。我们还比较了在相同记录条件下不同视觉结构的方向选择性程度。与 dLGN 相比,方向选择性在视皮层中得到了极大的提高,但在另一个主要的视网膜靶点上丘中则相似。总之,我们的结果表明,在小鼠的 dLGN 中存在显著的方向选择性,这可能有助于皮层的视觉处理。