<p>Each column, (A)–(C), corresponds to data from a different unit. First row: Raster plot for each of the 8 orientations. For each orientation, 100 randomly chosen trials are shown for 120 ms after stimulus onset. Second row: PSTH (Post Stimulus Time Histogram) for the same time window. Third row: Tuning curve of first spike latency. Cosine fit is shown as a solid line. Fourth row: Rate tuning curve (black circles) and a fitted von-Mises function (solid line). The cell in (A) is taken from dataset 1 in <a href="http://www.ploscompbiol.org/article/info:doi/10.1371/journal.pcbi.1002536#pcbi-1002536-t001" target="_blank">Table 1</a>, in which stimulus duration was 400 ms and the number of trials was 400. The cells in (B) and (C) are taken fro...
<p><b>1A–4A</b>: Four spike trains are shown in this panel. The bottom row (red) represents the obse...
<p>A. Example neural tuning curves for neurons with different BFs in primary auditory cortex. B. Exa...
<p>Generation of different EPSC shapes by independently varying rise and decay times and measurement...
<p>(A) Raster plot for of a sample cell in the data (taken from dataset 1 in <a href="http://www.plo...
<p>The tuning curves were fitted using a cosine function, , where <i>θ</i> is the stimulus orientati...
<p>(A)–(B) Pc (probability of correct discrimination) using first spike latency vs. Pc using the spi...
<p>Illustration of sample tempotrons that solve the luminance (left) or the boundary (right) task. E...
<p>(<b>A</b>) Representative tuning curve examples obtained from one control (left) and one PA rat (...
<p>Raster plots of successive evoked responses before and after learning (A and B) for four source s...
<p>(<b>A</b>) Scatterplot of first-spike latencies of two RGCs on multiple trials for each of the ei...
<p>Responses of two Layer 5 pyramidal cells in a slice preparation of rat prefrontal cortex. In (A) ...
<p>(A) Neurometric curves for a single cell using the first spike latency (red), second spike latenc...
<div><p>(A) Histograms of spike-time latencies (right) measured from the timing between EPSPs and sp...
<p><b>a.</b> Accuracy (% correct) as a function of reaction time for one subject in a block of trial...
<p>A hexagonal grid shows histograms of component latency versus RT for all non-rejected trials of a...
<p><b>1A–4A</b>: Four spike trains are shown in this panel. The bottom row (red) represents the obse...
<p>A. Example neural tuning curves for neurons with different BFs in primary auditory cortex. B. Exa...
<p>Generation of different EPSC shapes by independently varying rise and decay times and measurement...
<p>(A) Raster plot for of a sample cell in the data (taken from dataset 1 in <a href="http://www.plo...
<p>The tuning curves were fitted using a cosine function, , where <i>θ</i> is the stimulus orientati...
<p>(A)–(B) Pc (probability of correct discrimination) using first spike latency vs. Pc using the spi...
<p>Illustration of sample tempotrons that solve the luminance (left) or the boundary (right) task. E...
<p>(<b>A</b>) Representative tuning curve examples obtained from one control (left) and one PA rat (...
<p>Raster plots of successive evoked responses before and after learning (A and B) for four source s...
<p>(<b>A</b>) Scatterplot of first-spike latencies of two RGCs on multiple trials for each of the ei...
<p>Responses of two Layer 5 pyramidal cells in a slice preparation of rat prefrontal cortex. In (A) ...
<p>(A) Neurometric curves for a single cell using the first spike latency (red), second spike latenc...
<div><p>(A) Histograms of spike-time latencies (right) measured from the timing between EPSPs and sp...
<p><b>a.</b> Accuracy (% correct) as a function of reaction time for one subject in a block of trial...
<p>A hexagonal grid shows histograms of component latency versus RT for all non-rejected trials of a...
<p><b>1A–4A</b>: Four spike trains are shown in this panel. The bottom row (red) represents the obse...
<p>A. Example neural tuning curves for neurons with different BFs in primary auditory cortex. B. Exa...
<p>Generation of different EPSC shapes by independently varying rise and decay times and measurement...