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Adaptation and dynamics of cat retinal ganglion cells

机译:猫视网膜神经节细胞的适应与动力学

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摘要

1. The impulse/quantum (I/Q) ratio was measured as a function of background illumination for rod-dominated, pure central, linear square-wave responses of retinal ganglion cells in the cat.2. The I/Q ratio was constant at low backgrounds (dark adapted state) and inversely proportional to the 0·9 power of the background at high backgrounds (the light adapted state). There was an abrupt transition from the dark-adapted state to the light-adapted state.3. It was possible to define the adaptation level at a particular background as the ratio (I/Q ratio at that background)/(dark adapted I/Q ratio).4. The time course of the square-wave response was correlated with the adaptation level. The response was sustained in the dark-adapted state, partially transient at the transition level, and progressively more transient the lower the impulse/quantum ratio of the ganglion cell became. This was true both for on-centre and off-centre cells.5. The frequency response of the central response mechanism at different adaptation levels was measured. It was a low-pass characteristic in the dark-adapted state and became progressively more of a bandpass characteristic as the cell became more light-adapted.6. The rapidity of onset of adaptation was measured with a time-varying adapting light. The impulse/quantum ratio is reset within 100 msec of the onset of the conditioning light, and is kept at the new value throughout the time the conditioning light is on.7. These results can be explained by a nonlinear feedback model. In the model, it is postulated that the exponential function of the horizontal cell potential controls transmission from rods to bipolars. This model has an abrupt transition from dark- to light-adapted states, and its response dynamics are correlated with adaptation level.
机译:1.测量猫的视网膜神经节细胞的杆状,纯中央,线性方波响应的脉冲/量子(I / Q)比与背景照度的关系。2。 I / Q比在低背景(暗适应状态)下是恒定的,与高背景(浅适应状态)下背景的0·9幂成反比。从暗适应状态突然过渡到轻适应状态。3。可以将特定背景下的适应水平定义为比率(该背景下的I / Q比率)/(暗适应的I / Q比率)。4。方波响应的时间过程与适应水平相关。反应在暗适应状态下得以维持,在过渡水平上部分过渡,并且神经节细胞的冲动/量子比越低,过渡就越过渡。对于中心和偏心单元都是如此。5。测量了中央适应机制在不同适应水平下的频率响应。在暗适应状态下它是低通特性,随着电池变得更适应光,它逐渐成为更多的带通特性。6。用随时间变化的适应光测量适应开始的速度。脉冲/量子比在调理光开始后的100毫秒内重置,并在调理光开启的整个时间保持在新值。7。这些结果可以用非线性反馈模型来解释。在该模型中,假定水平电池势的指数函数控制着从杆到双极的传输。该模型具有从暗适应状态到亮适应状态的突然转变,并且其响应动力学与适应水平相关。

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