<p>Each bin reflects the average of 20 trials and error bars represent standard error of the mean. A)Performance accuracy. B) Mean number of fixations per trial. C) Probability of fixating the irrelevant feature. D) Time proportion shift, δ<sub>t</sub>. E) Error Bias, β′, for the speed condition. F) Error Bias, β′, for the accuracy condition.</p
<p>(a) Schematic diagram of an experimental trial in Experiment 1. (b) Representative data in the 10...
<p>The broken line shows that chance performance is 25%. Error bars are within-observers standard er...
<p>Mean and standard errors across participants of the biases for each condition in Experiments 1, 2...
<p>Each bin reflects the average of 20 trials and error bars represent standard error of the mean. A...
<p>Each bin reflects the average of 20 trials and error bars represent standard error of the mean. A...
<p>Each bin reflects the average of 20 trials and error bars represent standard error of the mean. A...
<p>Each bin reflects the average of 20 trials and error bars represent standard error of the mean. A...
<p>Each bin reflects the average of 20 trials and error bars represent standard error of the mean. A...
<p>Each bin reflects the average of 20 trials and error bars represent standard error of the mean. A...
<p>Each bin reflects the average of approximately 20 trials depending on how quickly each individual...
<p>A) Performance accuracy. B) Mean number of fixations per trial. C) Probability of fixating the ir...
<p>T1 and T2 accuracy as a function of current lag (trial n, 2 vs. 8), previous lag (trial n-1, 2 vs...
<p>(A–B): Mean proportion correct of trials for fixed contour/background ratio and fixed background ...
<p>Mean percentage correct report of T1 and T2 given correct report of T1 as a function of lag, for ...
<p>Mean accuracy (A) and reaction time (B) as a function of response bias condition. (C). Fitted DDM...
<p>(a) Schematic diagram of an experimental trial in Experiment 1. (b) Representative data in the 10...
<p>The broken line shows that chance performance is 25%. Error bars are within-observers standard er...
<p>Mean and standard errors across participants of the biases for each condition in Experiments 1, 2...
<p>Each bin reflects the average of 20 trials and error bars represent standard error of the mean. A...
<p>Each bin reflects the average of 20 trials and error bars represent standard error of the mean. A...
<p>Each bin reflects the average of 20 trials and error bars represent standard error of the mean. A...
<p>Each bin reflects the average of 20 trials and error bars represent standard error of the mean. A...
<p>Each bin reflects the average of 20 trials and error bars represent standard error of the mean. A...
<p>Each bin reflects the average of 20 trials and error bars represent standard error of the mean. A...
<p>Each bin reflects the average of approximately 20 trials depending on how quickly each individual...
<p>A) Performance accuracy. B) Mean number of fixations per trial. C) Probability of fixating the ir...
<p>T1 and T2 accuracy as a function of current lag (trial n, 2 vs. 8), previous lag (trial n-1, 2 vs...
<p>(A–B): Mean proportion correct of trials for fixed contour/background ratio and fixed background ...
<p>Mean percentage correct report of T1 and T2 given correct report of T1 as a function of lag, for ...
<p>Mean accuracy (A) and reaction time (B) as a function of response bias condition. (C). Fitted DDM...
<p>(a) Schematic diagram of an experimental trial in Experiment 1. (b) Representative data in the 10...
<p>The broken line shows that chance performance is 25%. Error bars are within-observers standard er...
<p>Mean and standard errors across participants of the biases for each condition in Experiments 1, 2...