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Colour-dependence of cone responses in the turtle retina

机译:乌龟视网膜中锥体反应的颜色依赖性

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摘要

1. Responses to monochromatic lights were recorded intracellularly from red cones, green cones, and luminosity horizontal cells (L-cells) in the retinae of turtles.2. Both types of cones responded to small fields of illumination with graded hyperpolarizations. Red cones were only moderately more sensitive to deep red (680 nm) than to green (550 nm) light while green cones were much more sensitive to the green light than to the red. L-cells produced small responses for flashes of either colour covering small fields.3. Stimulation of large fields with monochromatic lights of moderate or high intensity evoked large L-cell responses and composite responses in cones. These latter include the hyperpolarizing action of the light absorbed by the cone itself (direct response), its enhancement by illumination of the near surround, and the depolarizing effects of L-cell feed-back.4. L-cells respond primarily to the activity of red cones; with sufficient intensity of the light, however, their responses are influenced also by green cones. As a result, if a red and a green light stimulate red cones equally, the L-cell response is larger for the green stimulus.5. Green cones were depolarized by deep red lights of moderate intensity applied over large fields. These depolarizing responses include oscillations which follow closely oscillations in L-cells. Green light applied to the same large fields produced hyperpolarization of green cones.6. Red cones were hyperpolarized by red or green light covering large fields, but the time course of their responses differed for the two colours, reflecting a corresponding difference in L-cell activity.7. Red light in the form of an annulus produced large responses in central L-cells without eliciting direct responses in central green cones. In these conditions green cones developed depolarizing waves which included a large, sharp transient.8. It is concluded from these and other results that the direct response of each cone is modified by two interactions: enhancement only from nearby cones of the same colour and depression controlled (through L-cell feed-back) by cones of all colours. In this way the response of any cone will change as the proportion of responses in cones of different colours changes, this proportion being a function of the wave-length of the light.
机译:1.在海龟视网膜内的红锥,绿锥和发光水平细胞(L细胞)的细胞内记录了对单色光的响应。两种类型的圆锥体都对渐变的超极化对小照明区域做出响应。红色视锥细胞对深红光(680 nm)仅比对绿色(550 nm)光敏感,而绿色视锥细胞对绿光比对红色光敏感得多。 L细胞对覆盖小视野的两种颜色的闪光产生小的响应。3。用中等强度或高强度的单色光刺激大视野会引起大的L细胞反应和视锥细胞的复合反应。后者包括锥体自身吸收的光的超偏振作用(直接响应),近距离照明的增强作用以及L细胞反馈的消偏振作用。4。 L细胞主要对红色视锥细胞的活动作出反应。但是,如果光强度足够,它们的响应也会受到绿锥的影响。结果,如果红光和绿光均等地刺激红色视锥细胞,则对于绿色刺激,L细胞反应会更大。5。通过在大视野上施加中等强度的深红色光使绿锥消偏振。这些去极化响应包括紧随L细胞振荡的振荡。在相同的大视野上照射绿光会产生绿色视锥细胞的超极化现象。6。红色视锥细胞被覆盖大视野的红光或绿光超极化,但两种颜色的反应时间却不同,反映出L细胞活性的相应差异。7。环形的红光在中央L细胞中产生较大的响应,而在中央绿色视锥细胞中未引起直接响应。在这种情况下,绿色视锥细胞会产生去极化波,其中包括一个大而尖锐的瞬变8。从这些结果和其他结果可以得出结论,每个锥体的直接反应通过两种相互作用进行了修饰:仅来自附近相同颜色的锥体的增强和由所有颜色的锥体控制的凹陷(通过L细胞反馈)。这样,任何圆锥体的响应将随着不同颜色的圆锥体中响应比例的变化而变化,该比例是光的波长的函数。

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