amplification of trial-to-trial response variability by neurons in visual cortex放大trial-to-trial响应变化的视觉皮层的神经元.pdfVIP

amplification of trial-to-trial response variability by neurons in visual cortex放大trial-to-trial响应变化的视觉皮层的神经元.pdf

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amplification of trial-to-trial response variability by neurons in visual cortex放大trial-to-trial响应变化的视觉皮层的神经元

Open access, freely available online PLoS BIOLOGY Amplification of Trial-to-Trial Response Variability by Neurons in Visual Cortex Matteo Carandini* Smith-Kettlewell Eye Research Institute, San Francisco, California, United States of America The visual cortex responds to repeated presentations of the same stimulus with high variability. Because the firing mechanism is remarkably noiseless, the source of this variability is thought to lie in the membrane potential fluctuations that result from summated synaptic input. Here this hypothesis is tested through measurements of membrane potential during visual stimulation. Surprisingly, trial-to-trial variability of membrane potential is found to be low. The ratio of variance to mean is much lower for membrane potential than for firing rate. The high variability of firing rate is explained by the threshold present in the function that converts inputs into firing rates. Given an input with small, constant noise, this function produces a firing rate with a large variance that grows with the mean. This model is validated on responses recorded both intracellularly and extracellularly. In neurons of visual cortex, thus, a simple deterministic mechanism amplifies the low variability of summated synaptic inputs into the large variability of firing rate. The computational advantages provided by this amplification are not known. Citation: Carandini M (2004) Amplification of trial-to-trial response variability by neurons in visual cortex. PLoS Biol 2(9): e264. Introduction Results In the primary visual cortex (V1), different trials of From traces of membrane potential obtained at high presentation of an identical stimulus yield highly vari

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