Institute of Ophthalmology, University College London, London, United Kingdom.
J Neurophysiol. 2013 Feb;109(3):889-99. doi: 10.1152/jn.00194.2012. Epub 2012 Oct 24.
Feedback connections to early-level sensory neurons have been shown to affect many characteristics of their neural response. Because selectivity for stimulus size is a fundamental property of visual neurons, we examined the summation tuning and discretely mapped receptive field (RF) properties of cells in the lateral geniculate nucleus (LGN) both with and without feedback from visual cortex. Using extracellular recording in halothane-anesthetized cats, we used small luminance probes displaced in Cartesian coordinates to measure discrete response area, and optimal sinusoidal gratings of varying diameter to estimate preferred optimal summation size and level of center-surround antagonism. In conditions where most cortical feedback was pharmacologically removed, discretely mapped RF response areas showed an overall significant enlargement for the population compared with control conditions. A switch to increased levels of burst firing, spatially displaced from the RF center, suggested this was mediated by changes in excitatory-inhibitory balance across visual space. With the use of coextensive stimulation, there were overall highly significant increases in the optimal summation size and reduction of surround antagonism with removal of cortical feedback in the LGN. When fitted with a difference-of-Gaussian (DOG) model, changes in the center size, center amplitude, and surround amplitude parameters were most significantly related to the removal of cortical feedback. In summary, corticothalamic innervation of the visual thalamus can modify spatial summation properties in LGN relay cells, an effect most parsimoniously explained by changes in the excitatory-inhibitory balance.
已证实,早期感觉神经元的反馈连接会影响其神经反应的许多特征。由于对刺激大小的选择性是视觉神经元的基本特性,因此我们研究了外侧膝状体核(LGN)中细胞的总和调谐和离散映射感受野(RF)特性,包括有和没有来自视皮层的反馈。在卤烷麻醉的猫中进行细胞外记录,我们使用笛卡尔坐标中的小亮度探头来测量离散的反应区域,并使用不同直径的最佳正弦光栅来估计最佳总和大小和中心-周围拮抗的水平。在大多数皮质反馈被药理学去除的情况下,与对照条件相比,离散映射 RF 反应区域的总体显著增大。从 RF 中心空间位移的爆发性放电水平的增加表明,这是通过视觉空间中兴奋抑制平衡的变化介导的。通过使用扩展刺激,在 LGN 中去除皮质反馈时,最佳总和大小总体上显著增加,周围拮抗作用降低。当使用高斯差分(DOG)模型拟合时,中心大小、中心幅度和周围幅度参数的变化与皮质反馈的去除最显著相关。总之,视皮层对视觉丘脑的投射可以改变 LGN 中继细胞的空间总和特性,这种效应最合理的解释是兴奋性抑制平衡的变化。