Learning-induced plasticity in auditory spatial representations revealed by electrical neuroimaging.

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2007

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info:eu-repo/semantics/altIdentifier/doi/10.1523/JNEUROSCI.0764-07.2007

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info:eu-repo/semantics/altIdentifier/pmid/17507569

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info:eu-repo/semantics/altIdentifier/pissn/1529-2401[electronic]

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info:eu-repo/semantics/altIdentifier/urn/urn:nbn:ch:serval-BIB_95AB8429A28F1

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L. Spierer et al., « Learning-induced plasticity in auditory spatial representations revealed by electrical neuroimaging. », Serveur académique Lausannois, ID : 10.1523/JNEUROSCI.0764-07.2007


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Auditory spatial representations are likely encoded at a population level within human auditory cortices. We investigated learning-induced plasticity of spatial discrimination in healthy subjects using auditory-evoked potentials (AEPs) and electrical neuroimaging analyses. Stimuli were 100 ms white-noise bursts lateralized with varying interaural time differences. In three experiments, plasticity was induced with 40 min of discrimination training. During training, accuracy significantly improved from near-chance levels to approximately 75%. Before and after training, AEPs were recorded to stimuli presented passively with a more medial sound lateralization outnumbering a more lateral one (7:1). In experiment 1, the same lateralizations were used for training and AEP sessions. Significant AEP modulations to the different lateralizations were evident only after training, indicative of a learning-induced mismatch negativity (MMN). More precisely, this MMN at 195-250 ms after stimulus onset followed from differences in the AEP topography to each stimulus position, indicative of changes in the underlying brain network. In experiment 2, mirror-symmetric locations were used for training and AEP sessions; no training-related AEP modulations or MMN were observed. In experiment 3, the discrimination of trained plus equidistant untrained separations was tested psychophysically before and 0, 6, 24, and 48 h after training. Learning-induced plasticity lasted

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