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Linear Relations between Stimulus Amplitudes and Amplitudes of Retinal Action Potentials from the Eye of the Wolf Spider

机译:狼蛛眼中刺激振幅与视网膜动作电位振幅之间的线性关系

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摘要

Incremental photic stimuli have been used to elicit small amplitude retinal action potentials from light-adapted ocelli of the wolf spider, Lycosa baltimoriana (Keyserling) in order to see whether or not the amplitudes of these potentials are linearly related to the stimulus amplitudes. Sine wave variations of light intensity around a mean elicit sine wave variations in potential which contain inappreciable harmonics of the stimulus frequency and whose amplitudes are linearly related to the stimulus amplitudes. Likewise, the responses to the first two periodic Fourier components of incremental rectangular wave stimuli of variable duty cycle are directly proportional to the amplitudes of these components and have phases dependent only on the frequencies and phases of these components. Thirdly, a linear transfer function can be found which describes the amplitudes and phases of responses recorded at different frequencies of sine wave stimulation and this transfer function is sufficient to predict the responses to incremental step stimuli. Finally, it is shown that flash response amplitudes are linearly related to incremental flash intensities at all levels of adaptation. The relations of these linear responses to non-linear responses and to physiological mechanisms of the eye are discussed.
机译:为了观察这些电位的振幅是否与刺激振幅线性相关,已使用增量的光刺激从狼蛛Lycosa baltimoriana(Keyserling)的光适应性触角诱发较小振幅的视网膜动作电位。围绕平均光强度的正弦波变化会引起电势的正弦波变化,该正弦波变化包含刺激频率的不明显谐波,并且其振幅与刺激振幅呈线性关系。同样,对占空比可变的增量矩形波刺激的前两个周期性傅立叶分量的响应与这些分量的幅度成正比,并且其相位仅取决于这些分量的频率和相位。第三,可以找到线性传递函数,该函数描述了在正弦波刺激的不同频率下记录的响应的幅度和相位,并且该传递函数足以预测对增量阶跃刺激的响应。最后,表明在所有适应水平上,闪光响应幅度与增量闪光强度线性相关。讨论了这些线性响应与非线性响应以及眼睛生理机制的关系。

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