首页> 外文期刊>The Journal of general physiology >THE RESPONSES OF LIMULUS OPTIC NERVE FIBERS TO PATTERNS OF ILLUMINATION ON THE RECEPTOR MOSAIC
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THE RESPONSES OF LIMULUS OPTIC NERVE FIBERS TO PATTERNS OF ILLUMINATION ON THE RECEPTOR MOSAIC

机译:LI神经纤维对照明方式的响应

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The inhibition that is exerted mutually among receptor units (ommatidia) of the compound eye of Limulus is less for units widely separated than for those close together. This diminution of inhibition with distance is the resultant of two factors: (1) the threshold of inhibitory action increases with increasing distance between the units involved; and (2) the coefficient of inhibitory action decreases with increasing distance.The discharge of nerve impulses from ommatidia at various distances from one another may be described quantitatively by a set of simultaneous linear equations which express the excitatory effects of the illumination on each ommatidium and the inhibitory interactions between each ommatidium and its neighbors. The values of the thresholds and coefficients of inhibitory action, which appear as parameters in these equations, must be determined empirically: their dependence on distance is somewhat irregular and cannot yet be expressed in an exact general law. Nevertheless the diminution of inhibitory influences with distance is sufficiently uniform that patterns of neural response generated by various patterns of illumination on the receptor mosaic can be predicted qualitatively. Such predictions have been verified experimentally for two simple patterns of illumination: an abrupt step in intensity, and a simple gradient between two levels of intensity (the so-called Mach pattern). In each case, transitions in the pattern of illumination are accentuated in the corresponding pattern of neural response.
机译:widely的复眼的受体单元(眼病)之间相互施加的抑制作用对于相距较远的单元而言要小于对彼此靠近的单元。抑制作用随距离的减小是两个因素的结果:(1)抑制作用的阈值随所涉及单元之间距离的增加而增加; (2)抑制作用的系数随距离的增加而减小。相互之间不同距离的眼孔神经冲动的放电可以用一组同时的线性方程式定量描述,该方程组表示照明对每个眼孔的兴奋作用。每个邻小孔及其邻居之间的抑制性相互作用。在这些方程式中作为参数出现的阈值和抑制作用系数的值必须凭经验确定:它们对距离的依赖性有些不规则,尚不能以确切的一般定律表示。然而,抑制作用随距离的减小是足够均匀的,从而可以定性地预测由受体镶嵌体上的各种照明模式产生的神经反应模式。这种预测已通过两种简单的照明模式在实验上得到了验证:强度的突然变化,以及两种强度水平之间的简单梯度(所谓的马赫模式)。在每种情况下,照度模式的转变都会在相应的神经反应模式中加重。

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