Differential activation of human core, non-core and auditory-related cortex during speech categorization tasks as revealed by intracranial recordings
Speech perception requires that sounds be transformed into speech-related objects with lexical and semantic meaning. It is unclear at what level in the auditory pathways this transformation emerges. Primary auditory cortex has been implicated in both representation of acoustic sound attributes and s...
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Published in | Frontiers in neuroscience Vol. 8; p. 240 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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Abstract | Speech perception requires that sounds be transformed into speech-related objects with lexical and semantic meaning. It is unclear at what level in the auditory pathways this transformation emerges. Primary auditory cortex has been implicated in both representation of acoustic sound attributes and sound objects. While non-primary auditory cortex located on the posterolateral superior temporal gyrus (PLST) is clearly involved in acoustic-to-phonetic pre-lexical representations, it is unclear what role this region plays in auditory object formation. Additional data support the importance of prefrontal cortex in the formation of auditory objects, while other data would implicate this region in auditory object selection. To help clarify the respective roles of auditory and auditory-related cortex in the formation and selection of auditory objects, we examined high gamma activity simultaneously recorded directly from Heschl's gyrus (HG), PLST and prefrontal cortex, while subjects performed auditory semantic detection tasks. Subjects were patients undergoing evaluation for treatment of medically intractable epilepsy. We found that activity in posteromedial HG and early activity on PLST was robust to sound stimuli regardless of their context, and minimally modulated by tasks. Later activity on PLST could be strongly modulated by semantic context, but not by behavioral performance. Activity within prefrontal cortex also was related to semantic context, and did co-vary with behavior. We propose that activity in posteromedial HG and early activity on PLST primarily reflect the representation of spectrotemporal sound attributes. Later activity on PLST represents a pre-lexical processing stage and is an intermediate step in the formation of word objects. Activity in prefrontal cortex appears directly involved in word object selection. The roles of other auditory and auditory-related cortical areas in the formation of word objects remain to be explored. |
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AbstractList | Speech perception requires that sounds be transformed into speech-related objects with lexical and semantic meaning. It is unclear at what level in the auditory pathways this transformation emerges. Primary auditory cortex has been implicated in both representation of acoustic sound attributes and sound objects. While non-primary auditory cortex located on the posterolateral superior temporal gyrus (PLST) is clearly involved in acoustic-to-phonetic prelexical representations, it is unclear what role this region plays in auditory object formation. Additional data support the importance of prefrontal cortex in the formation of auditory objects, while other data would implicate this region in auditory object selection. To help clarify the respective roles of auditory and auditory-related cortex in the formation and selection of auditory objects, we examined high gamma activity simultaneously recorded directly from Heschl’s gyrus (HG), PLST and prefrontal cortex, while subjects performed auditory semantic detection tasks. Subjects were patients undergoing evaluation for treatment of medically intractable epilepsy. We found that activity in posteromedial HG and early activity on PLST was robust to sound stimuli regardless of their context, and minimally modulated by tasks. Later activity on PLST could be strongly modulated by semantic context, but not by behavioral performance. Activity within prefrontal cortex also was related to semantic context, and did co-vary with behavior. We propose that activity in posteromedial HG and early activity on PLST primarily reflect the representation of spectrotemporal sound attributes. Later activity on PLST represents a prelexical processing stage and is an intermediate step in the formation of word objects. Activity in prefrontal cortex appears directly involved in word object selection. The roles of other auditory and auditory-related cortical areas in the formation of word objects remain to be explored. Speech perception requires that sounds be transformed into speech-related objects with lexical and semantic meaning. It is unclear at what level in the auditory pathways this transformation emerges. Primary auditory cortex has been implicated in both representation of acoustic sound attributes and sound objects. While non-primary auditory cortex located on the posterolateral superior temporal gyrus (PLST) is clearly involved in acoustic-to-phonetic pre-lexical representations, it is unclear what role this region plays in auditory object formation. Additional data support the importance of prefrontal cortex in the formation of auditory objects, while other data would implicate this region in auditory object selection. To help clarify the respective roles of auditory and auditory-related cortex in the formation and selection of auditory objects, we examined high gamma activity simultaneously recorded directly from Heschl's gyrus (HG), PLST and prefrontal cortex, while subjects performed auditory semantic detection tasks. Subjects were patients undergoing evaluation for treatment of medically intractable epilepsy. We found that activity in posteromedial HG and early activity on PLST was robust to sound stimuli regardless of their context, and minimally modulated by tasks. Later activity on PLST could be strongly modulated by semantic context, but not by behavioral performance. Activity within prefrontal cortex also was related to semantic context, and did co-vary with behavior. We propose that activity in posteromedial HG and early activity on PLST primarily reflect the representation of spectrotemporal sound attributes. Later activity on PLST represents a pre-lexical processing stage and is an intermediate step in the formation of word objects. Activity in prefrontal cortex appears directly involved in word object selection. The roles of other auditory and auditory-related cortical areas in the formation of word objects remain to be explored. |
Author | Oya, Hiroyuki Rhone, Ariane E Kawasaki, Hiroto Steinschneider, Mitchell Howard, 3rd, Matthew A Nourski, Kirill V |
AuthorAffiliation | 1 Departments of Neurology and Neuroscience, Albert Einstein College of Medicine Bronx, NY, USA 2 Human Brain Research Laboratory, Department of Neurosurgery, The University of Iowa Iowa City, IA, USA |
AuthorAffiliation_xml | – name: 2 Human Brain Research Laboratory, Department of Neurosurgery, The University of Iowa Iowa City, IA, USA – name: 1 Departments of Neurology and Neuroscience, Albert Einstein College of Medicine Bronx, NY, USA |
Author_xml | – sequence: 1 givenname: Mitchell surname: Steinschneider fullname: Steinschneider, Mitchell organization: Departments of Neurology and Neuroscience, Albert Einstein College of Medicine Bronx, NY, USA – sequence: 2 givenname: Kirill V surname: Nourski fullname: Nourski, Kirill V organization: Human Brain Research Laboratory, Department of Neurosurgery, The University of Iowa Iowa City, IA, USA – sequence: 3 givenname: Ariane E surname: Rhone fullname: Rhone, Ariane E organization: Human Brain Research Laboratory, Department of Neurosurgery, The University of Iowa Iowa City, IA, USA – sequence: 4 givenname: Hiroto surname: Kawasaki fullname: Kawasaki, Hiroto organization: Human Brain Research Laboratory, Department of Neurosurgery, The University of Iowa Iowa City, IA, USA – sequence: 5 givenname: Hiroyuki surname: Oya fullname: Oya, Hiroyuki organization: Human Brain Research Laboratory, Department of Neurosurgery, The University of Iowa Iowa City, IA, USA – sequence: 6 givenname: Matthew A surname: Howard, 3rd fullname: Howard, 3rd, Matthew A organization: Human Brain Research Laboratory, Department of Neurosurgery, The University of Iowa Iowa City, IA, USA |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/25157216$$D View this record in MEDLINE/PubMed |
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Keywords | electrocorticography Heschl's gyrus high gamma speech prefrontal cortex semantics superior temporal gyrus |
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Notes | ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 ObjectType-Article-2 ObjectType-Feature-1 These authors have contributed equally to this work This article was submitted to Auditory Cognitive Neuroscience, a section of the journal Frontiers in Neuroscience. Edited by: Einat Liebenthal, Medical College of Wisconsin, USA Reviewed by: Christopher I. Petkov, Newcastle University, UK; Dana Boatman-Reich, Johns Hopkins School of Medicine, USA |
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SubjectTerms | Acoustic phonetics Acoustics Auditory pathways Context Cortex (auditory) Cortex (temporal) electrocorticography Epilepsy Gender Hearing Heschl’s gyrus high gamma Lexical semantics NMR Nuclear magnetic resonance Patients Phonology Prefrontal Cortex Psychology Semantics Sound Speech Speech perception Superior temporal gyrus Temporal gyrus Word formation |
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Title | Differential activation of human core, non-core and auditory-related cortex during speech categorization tasks as revealed by intracranial recordings |
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