Echoic memory: investigation of its temporal resolution by auditory offset cortical responses.

Previous studies showed that the amplitude and latency of the auditory offset cortical response depended on the history of the sound, which implicated the involvement of echoic memory in shaping a response. When a brief sound was repeated, the latency of the offset response depended precisely on the...

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Autores principales: Makoto Nishihara, Koji Inui, Tomoyo Morita, Minori Kodaira, Hideki Mochizuki, Naofumi Otsuru, Eishi Motomura, Takahiro Ushida, Ryusuke Kakigi
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Publicado: Public Library of Science (PLoS) 2014
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Acceso en línea:https://doaj.org/article/4881549318a8424fa6780bb0e63aabb0
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spelling oai:doaj.org-article:4881549318a8424fa6780bb0e63aabb02021-11-25T06:02:28ZEchoic memory: investigation of its temporal resolution by auditory offset cortical responses.1932-620310.1371/journal.pone.0106553https://doaj.org/article/4881549318a8424fa6780bb0e63aabb02014-01-01T00:00:00Zhttps://www.ncbi.nlm.nih.gov/pmc/articles/pmid/25170608/pdf/?tool=EBIhttps://doaj.org/toc/1932-6203Previous studies showed that the amplitude and latency of the auditory offset cortical response depended on the history of the sound, which implicated the involvement of echoic memory in shaping a response. When a brief sound was repeated, the latency of the offset response depended precisely on the frequency of the repeat, indicating that the brain recognized the timing of the offset by using information on the repeat frequency stored in memory. In the present study, we investigated the temporal resolution of sensory storage by measuring auditory offset responses with magnetoencephalography (MEG). The offset of a train of clicks for 1 s elicited a clear magnetic response at approximately 60 ms (Off-P50m). The latency of Off-P50m depended on the inter-stimulus interval (ISI) of the click train, which was the longest at 40 ms (25 Hz) and became shorter with shorter ISIs (2.5∼20 ms). The correlation coefficient r2 for the peak latency and ISI was as high as 0.99, which suggested that sensory storage for the stimulation frequency accurately determined the Off-P50m latency. Statistical analysis revealed that the latency of all pairs, except for that between 200 and 400 Hz, was significantly different, indicating the very high temporal resolution of sensory storage at approximately 5 ms.Makoto NishiharaKoji InuiTomoyo MoritaMinori KodairaHideki MochizukiNaofumi OtsuruEishi MotomuraTakahiro UshidaRyusuke KakigiPublic Library of Science (PLoS)articleMedicineRScienceQENPLoS ONE, Vol 9, Iss 8, p e106553 (2014)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Makoto Nishihara
Koji Inui
Tomoyo Morita
Minori Kodaira
Hideki Mochizuki
Naofumi Otsuru
Eishi Motomura
Takahiro Ushida
Ryusuke Kakigi
Echoic memory: investigation of its temporal resolution by auditory offset cortical responses.
description Previous studies showed that the amplitude and latency of the auditory offset cortical response depended on the history of the sound, which implicated the involvement of echoic memory in shaping a response. When a brief sound was repeated, the latency of the offset response depended precisely on the frequency of the repeat, indicating that the brain recognized the timing of the offset by using information on the repeat frequency stored in memory. In the present study, we investigated the temporal resolution of sensory storage by measuring auditory offset responses with magnetoencephalography (MEG). The offset of a train of clicks for 1 s elicited a clear magnetic response at approximately 60 ms (Off-P50m). The latency of Off-P50m depended on the inter-stimulus interval (ISI) of the click train, which was the longest at 40 ms (25 Hz) and became shorter with shorter ISIs (2.5∼20 ms). The correlation coefficient r2 for the peak latency and ISI was as high as 0.99, which suggested that sensory storage for the stimulation frequency accurately determined the Off-P50m latency. Statistical analysis revealed that the latency of all pairs, except for that between 200 and 400 Hz, was significantly different, indicating the very high temporal resolution of sensory storage at approximately 5 ms.
format article
author Makoto Nishihara
Koji Inui
Tomoyo Morita
Minori Kodaira
Hideki Mochizuki
Naofumi Otsuru
Eishi Motomura
Takahiro Ushida
Ryusuke Kakigi
author_facet Makoto Nishihara
Koji Inui
Tomoyo Morita
Minori Kodaira
Hideki Mochizuki
Naofumi Otsuru
Eishi Motomura
Takahiro Ushida
Ryusuke Kakigi
author_sort Makoto Nishihara
title Echoic memory: investigation of its temporal resolution by auditory offset cortical responses.
title_short Echoic memory: investigation of its temporal resolution by auditory offset cortical responses.
title_full Echoic memory: investigation of its temporal resolution by auditory offset cortical responses.
title_fullStr Echoic memory: investigation of its temporal resolution by auditory offset cortical responses.
title_full_unstemmed Echoic memory: investigation of its temporal resolution by auditory offset cortical responses.
title_sort echoic memory: investigation of its temporal resolution by auditory offset cortical responses.
publisher Public Library of Science (PLoS)
publishDate 2014
url https://doaj.org/article/4881549318a8424fa6780bb0e63aabb0
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