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Responses of retinal rods to single photons.

机译:视网膜棒对单光子的反应。

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摘要

1. A suction electrode was used to record the membrane current of single rod outer segments in pieces of toad retina. During dim illumination the membrane current showed pronounced fluctuations. 2. Amplitude histograms of responses to dim flashes of fixed intensity exhibited two discrete peaks, one at 0 pA and one near 1 pA, suggesting that the response was quantized. By setting a criterion amplitude level, flash responses could be classed as 'failures' (no response) or as 'successes' (at least one quantal event). 3. The variation of fraction of successes with flash intensity was consistent with the hypothesis that each quantal electrical event resulted from a single photoisomerization. 4. The quantal event had a mean amplitude of about 1 pA (5% of the standing dark current) and a standard deviation of 0.2 pA. Dispersion in the event amplitude prevented identification of histogram peaks corresponding to two or more photoisomerizations. 5. Individual quantal responses exhibited a smooth shape very similar to that of the average quantal response. This suggests that a single photoisomerization releases many particles of transmitter and that radial diffusion of internal transmitter is not a major source of delay in the light response. 6. The 'quantum efficiency' with which an absorbed photon generated an electrical event was measured as 0.5 +/- 0.1 (S.E. of mean, n = 4). This is slightly lower than the quantum efficiency of photoisomerization obtained previously for rhodopsin in solution. 7. At wavelengths between 420 and 700 nm the quantal event was invariant in size, although the cell's sensitivity varied over a range of 10(5). 8. The power spectrum of the fluctuations in dim steady light was predicted by assuming that a random series of quantal events occurred independently. 9. In brighter light the fluctuations were faster, and the response to an incremental flash was reduced in size and duration. The power spectrum could be predicted by assuming random superposition of events with the shape of the incremental flash response.
机译:1.用抽吸电极记录蟾蜍视网膜片中单个杆外段的膜电流。在昏暗的照明条件下,膜电流表现出明显的波动。 2.对固定强度的昏暗闪光的响应的振幅直方图显示两个离散的峰,一个在0 pA处,一个在1 pA附近,表明响应已量化。通过设置标准振幅水平,闪光响应可以分类为“失败”(无响应)或“成功”(至少一个定量事件)。 3.成功分数随闪光强度的变化与以下假设相符:每个定量电事件均来自单个光异构化。 4.定量事件的平均幅度约为1 pA(静止暗电流的5%),标准偏差为0.2 pA。事件振幅中的分散阻止了与两个或多个光异构化相对应的直方图峰的识别。 5.各个量化响应显示出与平均量化响应非常相似的平滑形状。这表明单个光异构化释放了许多发射体颗粒,并且内部发射体的径向扩散并不是光响应延迟的主要来源。 6.被吸收的光子产生电事件的“量子效率”被测量为0.5 +/- 0.1(均值的S.E.,n = 4)。这略低于先前视紫红质在溶液中获得的光异构化的量子效率。 7.尽管细胞的灵敏度在10(5)范围内变化,但在420至700 nm的波长范围内,定量事件的大小不变。 8.通过假设随机发生一系列随机的数量事件来预测昏暗稳定光中波动的功率谱。 9.在明亮的灯光下,波动更快,并且对增量闪光的响应在大小和持续时间上都减小了。可以通过假设事件与增量闪光响应形状的随机叠加来预测功率谱。

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