首页> 美国卫生研究院文献>The Journal of Physiology >Receptive field organization of ganglion cells in the frog retina: contributions from cones green rods and red rods.
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Receptive field organization of ganglion cells in the frog retina: contributions from cones green rods and red rods.

机译:青蛙视网膜中神经节细胞的感受野组织:视锥细胞绿棒和红棒的贡献。

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摘要

1. The impulse discharge of ganglion cells was recorded with extracellular micro-electrodes in the excised and opened eye of the common frog, Rana temporaria. 2. When a single unit was isolated, the cell type was first determined according to the Maturana, Lettvin, McCulloch & Pitts (1960) classification with the aid of varying moving and stationary stimuli. 3. Class 4 cells respond only to a decrease of light when cones are stimulated but respond to an increase of light when green rods are stimulated. A distinct class of deviating class 4 cells was found that give a brief high frequency burst at 'off' from their small excitatory receptive fields (ERF); unlike typical class 4 cells they possess a purely inhibitory surrounding field (IRF).4. The contributions from the cones and the green and red rods were isolated by measuring the thresholds of the discharges with on-off stimuli of varying wave-lengths against strong yellow backgrounds, or against a very weak background or no background at all. The spatial distribution of the contributions to the ERF was determined by mapping threshold profiles, and additional information about ERF and IRF was obtained from area-threshold curves. 5. The cone-mediated ERFs were found to be 0-06-0-50 mm wide (1-5-12 degrees of visual field), which agrees well with the sizes of the dendritic trees of the ganglion cells. The green rod-mediated ERFs can be 0-5-1-5 mm wide and have less distinct boundaries than the cone-mediated. The green rod-mediated ERF of an individual ganglion cell is always larger than the cone-mediated ERF of the same cell. The red rod-mediated ERFs seem to be somewhat larger than the cone-mediated but smaller than the green rod-mediated. 6. The green rods contribute only to the on thresholds of class 1, 2 and 4 cells, but both to on and off in typical class 3 cells, while the cones contribute to on and off in classes 1-3 and only to off in class 4.7. When the red rods begin to contribute during dark adaptation they seem to enter the cone but not the green rod channels. 8. All three receptor types contribute to the IRF surrounding the ERF of classes 1, 2, 3 and deviating class 4 cells. Normal class 4 cells have no IRF. 9. The organization of the receptive fields is discussed in relation to the anatomy and electrophysiology of the cell types transmitting the signals from the receptors to the ganglion cells.
机译:1.用细胞外微电极记录神经节细胞的脉冲放电,该细胞是在普通蛙蛙蛙的切除和张开的眼中。 2.当分离单个单位时,首先根据Maturana,Lettvin,McCulloch&Pitts(1960)的分类,借助变化的移动和静止刺激来确定细胞类型。 3.当刺激视锥细胞时,第4类细胞仅对光的减少作出反应,而当刺激绿杆时对光的增加作出反应。发现了与众不同的第4类偏离细胞,这些细胞在其小的兴奋性感受野(ERF)处“关闭”时产生了短暂的高频猝发。与典型的4类细胞不同,它们具有纯抑制性周围电场(IRF)。4。通过在强黄色背景下,在非常弱的背景下或根本没有背景下,通过测量具有不同波长的开-关激励的放电阈值,来隔离锥体和绿色和红色杆的贡献。通过映射阈值轮廓来确定对ERF的贡献的空间分布,并从面积阈值曲线获得有关ERF和IRF的其他信息。 5.发现视锥细胞介导的ERF宽度为0-06-0-50 mm(视野为1-5-12度),与神经节细胞树突状树的大小非常吻合。绿色棒介导的ERF的宽度可以为0-5-1-5 mm,并且比圆锥介导的边界少。单个神经节细胞的绿色杆介导的ERF始终大于同一细胞的视锥介导的ERF。红色棒介导的ERF似乎比圆锥介导的要大,但比绿色棒介导的要小。 6.绿色棒仅对1、2和4类单元的接通阈值起作用,但在典型的3类单元中对开和关都有影响,而圆锥在1-3类中对接通和断开有贡献,而在3类中对锥体起作用。 4.7级。当红色杆在黑暗适应过程中开始起作用时,它们似乎进入圆锥体,但没有进入绿色杆通道。 8.所有三种受体类型都导致IRF围绕1、2、3类和偏离4类细胞的ERF。正常的4类细胞没有IRF。 9.关于将信号从受体传递到神经节细胞的细胞类型的解剖学和电生理学,讨论了感受野的组织。

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