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首页> 外文期刊>The Journal of general physiology >Circadian rhythms in Limulus photoreceptors. I. Intracellular studies.
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Circadian rhythms in Limulus photoreceptors. I. Intracellular studies.

机译:Li光感受器中的昼夜节律。 I.细胞内研究。

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The sensitivity of the lateral eye of the horseshoe crab, Limulus polyphemus, is modulated by efferent optic nerve impulses transmitted from a circadian clock located in the brain (Barlow, R. B., Jr., S. J. Bolanowski, and M. L. Brachman. 1977. Science. 197:86-89). At night, the efferent impulses invade the retinular, eccentric, and pigment cells of every ommatidium, inducing multiple anatomical and physiological changes that combine to increase retinal sensitivity as much as 100,000 times. We developed techniques for recording transmembrane potentials from a single cell in situ for several days to determine what circadian changes in retinal sensitivity originate in the primary phototransducing cell, the retinular cell. We found that the direct efferent input to the photoreceptor cell decreases its noise and increases its response. Noise is decreased by reducing the rate of spontaneous bumps by up to 100%. The response is increased by elevating photon catch (photons absorbed per flash) as much as 30 times, and increasing gain (response per absorbed photon) as much as 40%. The cellular mechanism for reducing the rate of spontaneous quantum bumps is not known. The mechanism for increasing gain appears to be the modulation of ionic conductances in the photoreceptor cell membrane. The mechanism for increasing photon catch is multiple changes in the anatomy of retinal cells. We combine these cellular events in a proposed scheme for the circadian rhythm in the intensity coding of single photoreceptors.
机译:马蹄蟹侧poly多侧眼的敏感度受大脑中生物钟的传出视神经冲动的调节(Barlow,RB,Jr.,SJ Bolanowski和ML Brachman。1977.科学197 :86-89)。在晚上,传出的冲动会侵袭每个o孔的视网膜,偏心和色素细胞,引起多种解剖学和生理学变化,这些变化相结合可将视网膜敏感性提高多达100,000倍。我们开发了一种技术,可在几天内从单个细胞中记录跨膜电位,以确定哪些视网膜敏感性的昼夜节律变化起源于主要的光转导细胞(即视网膜细胞)。我们发现直接传给光感受器细胞的输入减少了它的噪声并增加了它的响应。通过将自发颠簸率降低多达100%,可以降低噪音。通过将光子捕获量(每个闪光灯吸收的光子)提高多达30倍,并将增益(每个吸收光子的响应)提高多达40%,可以增加响应。降低自发量子碰撞速率的细胞机制尚不清楚。增加增益的机制似乎是感光细胞膜中离子电导的调节。增加光子捕获的机制是视网膜细胞解剖结构的多种变化。我们将这些细胞事件结合在单个光感受器强度编码的昼夜节律的拟议方案中。

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