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Control of Retinal Sensitivity

The Journal of General Physiology · 1974 · Vol. 63(1) · pp. 37–61
Richard A. NormannFrank S. Werblin

Abstract

Rods and cones in Necturus respond with graded hyperpolarization to test flashes spanning about 3.5 log units of intensity. Steady background levels hyperpolarize the rods, and the rod responses become progressively smaller as background level is increased. In cones, higher background levels reduce the effectiveness of test flashes, so higher ranges of test intensities are required to elicit the full range of graded responses. When backgrounds are terminated, cones return rapidly, but rods return slowly to the dark potential level. The effects of backgrounds on both rods and cones can be observed at intensities that cause negligible bleaching as determined by retinal densitometry. During dark adaptation, changes are observed in the rods and cones that are similar to those produced by backgrounds. Receptor sensitivities, derived from these results, show that rods saturate, cones obey Weber's law, and sensitization during dark adaptation follows a two-phase time-course.

Photoreceptor and optogenetics researchRetinal Development and DisordersNeuroscience and Neuropharmacology ResearchRodRetinalAdaptation (eye)BiophysicsOpticsPhysicsChemistryBiologyMedicineBiochemistry

MeSH terms

Adaptation, OcularAnimalsDark AdaptationElectrophysiologyKineticsSynaptic TransmissionPhotic StimulationPhotoreceptor CellsRetinaRetinal PigmentsCaudataUrodela
Citations
410
FWCI
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field-weighted impact
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99%
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References
The contrast sensitivity of retinal ganglion cells of the cat
The Journal of Physiology · 1966 · 2,643 citations
Anatomy and Physiology of Vision in the Frog (<i>Rana pipiens</i>)
The Journal of General Physiology · 1960 · 820 citations
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