Department of Neuroscience, Physiology and Pharmacology, University College London, London, WC1E 6DE, United Kingdom, and.
Department of Neuroscience, Physiology and Pharmacology, University College London, London, WC1E 6DE, United Kingdom, and Biozentrum, University of Basel, 4056 Basel, Switzerland.
J Neurosci. 2014 Jul 16;34(29):9812-6. doi: 10.1523/JNEUROSCI.0875-14.2014.
In primary visual cortex (V1), connectivity between layer 2/3 (L2/3) excitatory neurons undergoes extensive reorganization after the onset of visual experience whereby neurons with similar feature selectivity form functional microcircuits (Ko et al., 2011, 2013). It remains unknown whether visual experience is required for the developmental refinement of intracortical circuitry or whether this maturation is guided intrinsically. Here, we correlated the connectivity between V1 L2/3 neurons assayed by simultaneous whole-cell recordings in vitro to their response properties measured by two-photon calcium imaging in vivo in dark-reared mice. We found that neurons with similar responses to oriented gratings or natural movies became preferentially connected in the absence of visual experience. However, the relationship between connectivity and similarity of visual responses to natural movies was not as strong in dark-reared as in normally reared mice. Moreover, dark rearing prevented the normally occurring loss of connections between visually nonresponsive neurons after eye opening (Ko et al., 2013). Therefore, our data suggest that the absence of visual input does not prevent the emergence of functionally specific recurrent connectivity in cortical circuits; however, visual experience is required for complete microcircuit maturation.
在初级视觉皮层 (V1) 中,视觉经验开始后,层 2/3 (L2/3) 兴奋性神经元之间的连接发生广泛重组,具有相似特征选择性的神经元形成功能微电路 (Ko 等人,2011 年,2013 年)。目前尚不清楚视觉经验是否是皮层内电路发育完善所必需的,或者这种成熟是否是内在指导的。在这里,我们通过在体外同时进行全细胞记录来测定 V1 L2/3 神经元之间的连接,并通过在暗养小鼠体内进行双光子钙成像来测量其对响应特性的相关性。我们发现,对定向光栅或自然电影有相似反应的神经元在没有视觉经验的情况下优先连接。然而,在暗养小鼠中,连接与对自然电影的视觉反应相似性之间的关系不如在正常饲养的小鼠中强。此外,暗养阻止了在睁眼后视觉无反应神经元之间通常发生的连接丧失 (Ko 等人,2013 年)。因此,我们的数据表明,缺乏视觉输入并不会阻止皮质回路中出现功能特异性的递归连接;然而,视觉经验是完全微电路成熟所必需的。