Guenther E, Zrenner E
Department of Pathophysiology of Vision and Neuroophthalmology, University Eye Hospital, Tübingen, Germany.
J Neurosci. 1993 Apr;13(4):1543-50. doi: 10.1523/JNEUROSCI.13-04-01543.1993.
The spectral sensitivity of cat retinal ganglion neurons (RGNs) was determined by means of extracellular recordings under scotopic and photopic conditions, in both receptive field center and surround. Test stimuli were presented either as square-wave single flashes or as flicker stimuli. Chromatic adaptation was achieved by a large steady monochromatic background field. In the dark-adapted state the spectral sensitivity of the majority of ganglion cells (92%) was rod mediated (peak sensitivity at 501 nm). Under photopic conditions all neurons received input from a long-wavelength-sensitive (L-cone) system with a peak sensitivity of 550 nm. Input from a short-wavelength-sensitive (S-cone) system (peak sensitivity at 450 nm), however, was found only in 15% of the ganglion cells. A small cell population (8%) located within the area centralis revealed a different receptive field organization. In these cells, spectral sensitivity in the field center peaked at 520 nm in the dark-adapted state and response threshold was about 1 log unit higher than in cells with a peak sensitivity of 501 nm. Critical flicker fusion was reached at 60-70 Hz, a frequency that usually is mediated by cones. We therefore postulate an additional input of a midspectral receptor system (M-system) other than rods in cat retinal ganglion cells. This input was found only in the receptive field center of some ganglion cells in the dark-adapted state, whereas the surround sensitivity was mediated in all cells by rod signals under scotopic and predominantly by L-cone signals under photopic conditions.
在暗视和明视条件下,通过细胞外记录测定了猫视网膜神经节神经元(RGNs)在感受野中心和周边的光谱敏感性。测试刺激以方波单闪光或闪烁刺激的形式呈现。通过大的稳定单色背景场实现颜色适应。在暗适应状态下,大多数神经节细胞(92%)的光谱敏感性由视杆介导(峰值敏感性在501nm)。在明视条件下,所有神经元都接受来自长波长敏感(L-视锥)系统的输入,峰值敏感性为550nm。然而,仅在15%的神经节细胞中发现了来自短波长敏感(S-视锥)系统(峰值敏感性在450nm)的输入。位于中央凹区域内的一小部分细胞群(8%)表现出不同的感受野组织。在这些细胞中,暗适应状态下感受野中心的光谱敏感性在520nm处达到峰值,响应阈值比峰值敏感性为501nm的细胞高约1个对数单位。临界闪烁融合在60 - 70Hz时达到,这个频率通常由视锥介导。因此,我们推测猫视网膜神经节细胞中除视杆外还存在一个中光谱受体系统(M-系统)的额外输入。这种输入仅在暗适应状态下一些神经节细胞的感受野中心被发现,而在暗视条件下所有细胞的周边敏感性由视杆信号介导,在明视条件下主要由L-视锥信号介导。