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  4. Difference In Perseverative Errors During A Visual Attention Task With Auditory Distractors In Alpha-9 Nicotinic Receptor Subunit Wild Type And Knock-Out Mice
 
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Difference In Perseverative Errors During A Visual Attention Task With Auditory Distractors In Alpha-9 Nicotinic Receptor Subunit Wild Type And Knock-Out Mice

Journal
Frontiers in Cellular Neuroscience
Date Issued
2017-11-08
Author(s)
Pascal Jorratt
Paul H. Delano
Carolina Delgado
Dagnino, Alexies  
Facultad de Ciencias  
Gonzalo Terreros
DOI
10.3389/fncel.2017.00357
WoS ID
WOS:000414661900001
Abstract
The auditory efferent system is a neural network that originates in the auditory cortex and projects to the cochlear receptor through olivocochlear (OC) neurons. Medial OC neurons make cholinergic synapses with outer hair cells (OHCs) through nicotinic receptors constituted by α9 and α10 subunits. One of the physiological functions of the α9 nicotinic receptor subunit (α9-nAChR) is the suppression of auditory distractors during selective attention to visual stimuli. In a recent study we demonstrated that the behavioral performance of alpha-9 nicotinic receptor knock-out (KO) mice is altered during selective attention to visual stimuli with auditory distractors since they made less correct responses and more omissions than wild type (WT) mice. As the inhibition of the behavioral responses to irrelevant stimuli is an important mechanism of the selective attention processes, behavioral errors are relevant measures that can reflect altered inhibitory control. Errors produced during a cued attention task can be classified as premature, target and perseverative errors. Perseverative responses can be considered as an inability to inhibit the repetition of an action already planned, while premature responses can be considered as an index of the ability to wait or retain an action. Here, we studied premature, target and perseverative errors during a visual attention task with auditory distractors in WT and KO mice. We found that α9-KO mice make fewer perseverative errors with longer latencies than WT mice in the presence of auditory distractors. In addition, although we found no significant difference in the number of target error between genotypes, KO mice made more short-latency target errors than WT mice during the presentation of auditory distractors. The fewer perseverative error made by α9-KO mice could be explained by a reduced motivation for reward and an increased impulsivity during decision making with auditory distraction in KO mice.
Subjects

Cellular And Molecula...

Neurosciences

OCDE Subjects

Medical And Health Sc...

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