Author:
BERNTSON AMY,SMITH ROBERT G.,TAYLOR W. ROWLAND
Abstract
At very low light levels the sensitivity of the visual system is determined by the efficiency with which single photons are captured, and the resulting signal transmitted from the rod photoreceptors through the retinal circuitry to the ganglion cells and on to the brain. Although the tiny electrical signals due to single photons have been observed in rod photoreceptors, little is known about how these signals are preserved during subsequent transmission to the optic nerve. We find that the synaptic currents elicited by single photons in mouse rod bipolar cells have a peak amplitude of 5–6 pA, and that about 20 rod photoreceptors converge upon each rod bipolar cell. The data indicates that the first synapse, between rod photoreceptors and rod bipolar cells, signals a binary event: the detection, or not, of a photon or photons in the connected rod photoreceptors. We present a simple model that demonstrates how a threshold nonlinearity during synaptic transfer allows transmission of the single photon signal, while rejecting the convergent neural noise from the 20 other rod photoreceptors feeding into this first synapse.
Publisher
Cambridge University Press (CUP)
Subject
Sensory Systems,Physiology
Reference52 articles.
1. Morgans, C.W. (1999).Calcium channel heterogeneity among cone photoreceptors in the treeshrew retina.European Journal of Neuroscience 11,2989–2993.
2. Wässle, H. , Boycott, B. , & Peichl, L. (1978).Receptor contacts of horizontal cells in the retina of the domesticcat.Proceedings of the Royal Society B (London) 203,247–267.
3. Sakmann, B. , Creutzfeldt, O. , & Scheich, H. (1969).An experimental comparison between the ganglion cell receptivefield and the receptive field of the adaptation pool in the catretina.Pflugers Archive 307,133–137.
4. van Rossum, M.C. & Smith, R.G. (1998).Noise removal at the rod synapse of mammalian retina.Visual Neuroscience 15,809–821.
5. Enroth-Cugell, C. & Lennie, P. (1975).The control of retinal ganglion cell discharge by receptive fieldsurrounds.Journal of Physiology 247,551–578.
Cited by
71 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献