Network Adaptation Improves Temporal Representation of Naturalistic Stimuli in Drosophila Eye: I Dynamics
Open Access
- 30 January 2009
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLOS ONE
- Vol. 4 (1) , e4307
- https://doi.org/10.1371/journal.pone.0004307
Abstract
Because of the limited processing capacity of eyes, retinal networks must adapt constantly to best present the ever changing visual world to the brain. However, we still know little about how adaptation in retinal networks shapes neural encoding of changing information. To study this question, we recorded voltage responses from photoreceptors (R1–R6) and their output neurons (LMCs) in the Drosophila eye to repeated patterns of contrast values, collected from natural scenes. By analyzing the continuous photoreceptor-to-LMC transformations of these graded-potential neurons, we show that the efficiency of coding is dynamically improved by adaptation. In particular, adaptation enhances both the frequency and amplitude distribution of LMC output by improving sensitivity to under-represented signals within seconds. Moreover, the signal-to-noise ratio of LMC output increases in the same time scale. We suggest that these coding properties can be used to study network adaptation using the genetic tools in Drosophila, as shown in a companion paper (Part II).Keywords
This publication has 99 references indexed in Scilit:
- Network Adaptation Improves Temporal Representation of Naturalistic Stimuli in Drosophila Eye: I DynamicsPLOS ONE, 2009
- Network Adaptation Improves Temporal Representation of Naturalistic Stimuli in Drosophila Eye: II MechanismsPLOS ONE, 2009
- Fractional differentiation by neocortical pyramidal neuronsNature Neuroscience, 2008
- Visual Coding in Locust PhotoreceptorsPLOS ONE, 2008
- Glutamate, GABA and Acetylcholine Signaling Components in the Lamina of the Drosophila Visual SystemPLOS ONE, 2008
- Sophisticated Temporal Pattern Recognition in Retinal Ganglion CellsJournal of Neurophysiology, 2008
- Sensory adaptationPublished by Elsevier ,2007
- Feedback Network Controls Photoreceptor Output at the Layer of First Visual Synapses in Drosophila The Journal of general physiology, 2006
- Weak pairwise correlations imply strongly correlated network states in a neural populationNature, 2006
- Function of a Fly Motion-Sensitive Neuron Matches Eye Movements during Free FlightPLoS Biology, 2005