The minimum latency of the a‐wave
- 1 August 1968
- journal article
- research article
- Published by Wiley in The Journal of Physiology
- Vol. 197 (3) , 529-549
- https://doi.org/10.1113/jphysiol.1968.sp008573
Abstract
1. Intense flashes of light evoke early and late receptor potentials from albino rat eyes.2. When the temperature is lowered the amplitude of the early receptor potential (e.r.p.) is found to decrease much more than that of the a‐wave. Below 5° the a‐wave can be seen without a preceding negative e.r.p.3. The a‐wave, but not the e.r.p., is suppressed by an intense flash, so that subsequent stimuli only evoke e.r.p.s.4. The responses of such light‐adapted eyes have been used to determine the contribution of the a‐wave to the response of dark‐adapted eyes.5. These calculated a‐waves begin during the e.r.p. with an initial portion which is biphasic.6. The initial portion has a temperature dependence similar to that of the a‐wave. It is not related to the photoreversal of rhodopsin caused by the stimulating flashes.7. The minimum latency of the a‐wave, extrapolated to body temperature, is approximately 300 μsec.8. The site and mode of generation of the a‐wave is discussed.This publication has 23 references indexed in Scilit:
- Nonlinear Transient Responses from Light-Adapted Wolf Spider Eyes to Changes in Background IlluminationThe Journal of general physiology, 1967
- Spectral response curves of single cones in the carpVision Research, 1967
- New components of the mammalian receptor potential and their relation to visual photochemistryVision Research, 1966
- Effects of light-adaptation on the early receptor potentialVision Research, 1966
- Localization of slow potential responses in the Necturus retinaVision Research, 1964
- Early Receptor Potential of the Vertebrate RetinaNature, 1964
- Changes in time scale and sensitivity in the ommatidia of LimulusThe Journal of Physiology, 1964
- The Rat ElectroretinogramThe Journal of general physiology, 1964
- A New Receptor Potential of the Monkey Retina with no Detectable LatencyNature, 1964
- The Photochemical Basis of Rod VisionJournal of the Optical Society of America, 1951