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The parameters that describe the varying task conditions define queries into the recorded training data.
Furthermore, neural responses during the delay periods were dependent on the task conditions.
Nine task conditions were used consisting of three working heights and three parts bin positions.
Two task conditions were compared.
Subjects were also slower under dual-task conditions (F 1,13) = 97.77, p<.001) and less accurate (F 1,13) = 37.01, p<.001) compared to single task conditions.
tPAS scores correlated positively with reaction times across task conditions, as did PAS scores.
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Cognitive task performance decreased under dual-task conditions.
In application, our results indicate that redundant visual signals are likely to be as effective at aiding visual detection under multi-task conditions as under single-task conditions.
Contrary to this hypothesis, though, mean single-target RTs for dual-task conditions were credibly longer than those for single-task conditions in across all experiments.
There were no differences between the dual-task conditions (p s >.05).
We found that the dual-task conditions had slower RTs than the control conditions (p <.05).
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