Tonotopic representation of loudness in the human cortex
Autor: | Andrew, Thwaites, Josef, Schlittenlacher, Ian, Nimmo-Smith, William D, Marslen-Wilson, Brian C J, Moore |
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Rok vydání: | 2016 |
Předmět: |
Adult
Male Auditory Pathways Time Factors Adolescent Loudness Perception Models Neurological Tonotopy EMEG electro- and magneto-encephalographic HG Heschl's gyrus Article Entrainment Young Adult Hearing KID Kymata identifier Reaction Time Humans Cerebral Cortex Neurons Brain Mapping CF characteristic frequency DLS dorso-lateral sulcus Magnetoencephalography Model expression Loudness Acoustic Stimulation Speech Perception Female Audiometry Speech Temporal integration |
Zdroj: | Hearing Research |
ISSN: | 1878-5891 |
Popis: | A prominent feature of the auditory system is that neurons show tuning to audio frequency; each neuron has a characteristic frequency (CF) to which it is most sensitive. Furthermore, there is an orderly mapping of CF to position, which is called tonotopic organization and which is observed at many levels of the auditory system. In a previous study (Thwaites et al., 2016) we examined cortical entrainment to two auditory transforms predicted by a model of loudness, instantaneous loudness and short-term loudness, using speech as the input signal. The model is based on the assumption that neural activity is combined across CFs (i.e. across frequency channels) before the transform to short-term loudness. However, it is also possible that short-term loudness is determined on a channel-specific basis. Here we tested these possibilities by assessing neural entrainment to the overall and channel-specific instantaneous loudness and the overall and channel-specific short-term loudness. The results showed entrainment to channel-specific instantaneous loudness at latencies of 45 and 100 ms (bilaterally, in and around Heschl's gyrus). There was entrainment to overall instantaneous loudness at 165 ms in dorso-lateral sulcus (DLS). Entrainment to overall short-term loudness occurred primarily at 275 ms, bilaterally in DLS and superior temporal sulcus. There was only weak evidence for entrainment to channel-specific short-term loudness. Highlights • The latency of cortical entrainment to various aspects of loudness was assessed. • For channel-specific instantaneous loudness the latencies were 45 and 100 ms. • For overall instantaneous loudness the latency was 165 ms. • For overall short-term loudness the latency was 275 ms. • Entrainment to channel-specific short-term loudness was weak. |
Databáze: | OpenAIRE |
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