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Reversal of Age-related Neural Timing Delays with Training

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Specialty Science
Date 2013 Feb 13
PMID 23401541
Citations 105
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Abstract

Neural slowing is commonly noted in older adults, with consequences for sensory, motor, and cognitive domains. One of the deleterious effects of neural slowing is impairment of temporal resolution; older adults, therefore, have reduced ability to process the rapid events that characterize speech, especially in noisy environments. Although hearing aids provide increased audibility, they cannot compensate for deficits in auditory temporal processing. Auditory training may provide a strategy to address these deficits. To that end, we evaluated the effects of auditory-based cognitive training on the temporal precision of subcortical processing of speech in noise. After training, older adults exhibited faster neural timing and experienced gains in memory, speed of processing, and speech-in-noise perception, whereas a matched control group showed no changes. Training was also associated with decreased variability of brainstem response peaks, suggesting a decrease in temporal jitter in response to a speech signal. These results demonstrate that auditory-based cognitive training can partially restore age-related deficits in temporal processing in the brain; this plasticity in turn promotes better cognitive and perceptual skills.

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References
1.
Kuo B, Yeh Y, Chen A, DEsposito M . Functional connectivity during top-down modulation of visual short-term memory representations. Neuropsychologia. 2011; 49(6):1589-96. PMC: 3085092. DOI: 10.1016/j.neuropsychologia.2010.12.043. View

2.
Campbell T, Kerlin J, Bishop C, Miller L . Methods to eliminate stimulus transduction artifact from insert earphones during electroencephalography. Ear Hear. 2011; 33(1):144-50. PMC: 3214253. DOI: 10.1097/AUD.0b013e3182280353. View

3.
Song J, Skoe E, Banai K, Kraus N . Training to improve hearing speech in noise: biological mechanisms. Cereb Cortex. 2011; 22(5):1180-90. PMC: 3450924. DOI: 10.1093/cercor/bhr196. View

4.
Kilgard M, Merzenich M . Plasticity of temporal information processing in the primary auditory cortex. Nat Neurosci. 1999; 1(8):727-31. PMC: 2948964. DOI: 10.1038/3729. View

5.
Song J, Skoe E, Wong P, Kraus N . Plasticity in the adult human auditory brainstem following short-term linguistic training. J Cogn Neurosci. 2008; 20(10):1892-902. PMC: 2829864. DOI: 10.1162/jocn.2008.20131. View