Sriram Balaji, Meier Philip M, Reinagel Pamela
Division of Biology, University of California, San Diego, California; and.
Department of Neuroscience, University of California, San Diego, California.
J Neurophysiol. 2016 Jun 1;115(5):2658-71. doi: 10.1152/jn.00812.2014. Epub 2016 Mar 2.
Visual response properties of neurons in the dorsolateral geniculate nucleus (dLGN) have been well described in several species, but not in rats. Analysis of responses from the unanesthetized rat dLGN will be needed to develop quantitative models that account for visual behavior of rats. We recorded visual responses from 130 single units in the dLGN of 7 unanesthetized rats. We report the response amplitudes, temporal frequency, and spatial frequency sensitivities in this population of cells. In response to 2-Hz visual stimulation, dLGN cells fired 15.9 ± 11.4 spikes/s (mean ± SD) modulated by 10.7 ± 8.4 spikes/s about the mean. The optimal temporal frequency for full-field stimulation ranged from 5.8 to 19.6 Hz across cells. The temporal high-frequency cutoff ranged from 11.7 to 33.6 Hz. Some cells responded best to low temporal frequency stimulation (low pass), and others were strictly bandpass; most cells fell between these extremes. At 2- to 4-Hz temporal modulation, the spatial frequency of drifting grating that drove cells best ranged from 0.008 to 0.18 cycles per degree (cpd) across cells. The high-frequency cutoff ranged from 0.01 to 1.07 cpd across cells. The majority of cells were driven best by the lowest spatial frequency tested, but many were partially or strictly bandpass. We conclude that single units in the rat dLGN can respond vigorously to temporal modulation up to at least 30 Hz and spatial detail up to 1 cpd. Tuning properties were heterogeneous, but each fell along a continuum; we found no obvious clustering into discrete cell types along these dimensions.
背外侧膝状核(dLGN)中神经元的视觉反应特性在多个物种中已有详尽描述,但在大鼠中尚未见报道。若要建立能够解释大鼠视觉行为的定量模型,就需要对未麻醉大鼠的dLGN反应进行分析。我们记录了7只未麻醉大鼠dLGN中130个单细胞的视觉反应。我们报告了这群细胞的反应幅度、时间频率和空间频率敏感性。在2赫兹视觉刺激下,dLGN细胞每秒发放15.9±11.4个峰电位(平均值±标准差),围绕平均值受10.7±8.4个峰电位调制。全视野刺激的最佳时间频率在不同细胞间范围为5.8至19.6赫兹。时间高频截止范围为11.7至33.6赫兹。一些细胞对低时间频率刺激反应最佳(低通),另一些则严格为带通;大多数细胞介于这两种极端情况之间。在2至4赫兹时间调制下,驱动细胞最佳的漂移光栅的空间频率在不同细胞间范围为每度0.008至0.18周(cpd)。高频截止范围在不同细胞间为0.01至1.07 cpd。大多数细胞受测试的最低空间频率驱动最佳,但许多细胞部分或严格为带通。我们得出结论,大鼠dLGN中的单细胞能够对至少高达30赫兹的时间调制和高达1 cpd的空间细节做出强烈反应。调谐特性是异质的,但每个都处于一个连续统中;我们未发现沿这些维度明显聚类为离散细胞类型的情况。