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Adaptations for vision in dim light: impulse responses and bumps in nocturnal spider photoreceptor cells (Cupiennius salei Keys)

机译:在昏暗的灯光下适应视觉:夜间蜘蛛感光细胞的冲动反应和颠簸(Cupiennius salei Keys)

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摘要

The photoreceptor cells of the nocturnal spider Cupiennius salei were investigated by intracellular electrophysiology. (1) The responses of photoreceptor cells of posterior median (PM) and anterior median (AM) eyes to short (2 ms) light pulses showed long integration times in the dark-adapted and shorter integration times in the light-adapted state. (2) At very low light intensities, the photoreceptors responded to single photons with discrete potentials, called bumps, of high amplitude (2–20 mV). When measured in profoundly dark-adapted photoreceptor cells of the PM eyes these bumps showed an integration time of 128 ± 35 ms (n = 7) whereas in dark-adapted photoreceptor cells of AM eyes the integration time was 84 ± 13 ms (n = 8), indicating that the AM eyes are intrinsically faster than the PM eyes. (3) Long integration times, which improve visual reliability in dim light, and large responses to single photons in the dark-adapted state, contribute to a high visual sensitivity in Cupiennius at night. This conclusion is underlined by a calculation of sensitivity that accounts for both anatomical and physiological characteristics of the eye.
机译:通过细胞内电生理学研究了夜蜘蛛saleienusus salei的感光细胞。 (1)后中位(PM)和前中位(AM)眼睛的感光细胞对短(2 ms)光脉冲的响应显示,在暗适应状态下积分时间较长,而在轻适应状态下积分时间较短。 (2)在非常低的光强度下,感光器对单个光子的响应具有离散振幅,即高振幅(2–20 mV)的凸起。在PM眼的深适应黑暗的感光细胞中进行测量时,这些凸起显示的积分时间为128±35 ms(n = 7),而在AM眼的适应黑暗的感光细胞中,积分时间为84±13 ms(n = 8),表明AM眼睛本质上比PM眼睛快。 (3)较长的积分时间提高了昏暗光线下的视觉可靠性,并且在暗适应状态下对单个光子的响应较大,这有助于夜间在Cupiennius中获得较高的视觉灵敏度。通过对眼睛的解剖和生理特征均具有敏感性的计算来强调该结论。

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  • 来源
    《Journal of Comparative Physiology A》 |2007年第10期|1081-1087|共7页
  • 作者单位

    Department of Neurobiology and Cognition Research University of Vienna Althanstr.14 1090 Vienna Austria;

    Department of Cell and Organism Biology Lund University Helgonavägen 3 22362 Lund Sweden;

    Department of Neurobiology and Cognition Research University of Vienna Althanstr.14 1090 Vienna Austria;

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