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Showing 1 to 15 of 60 results Save | Export
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Marina Pi-Ruano; Alexandra Fort; Pilar Tejero; Christophe Jallais; Javier Roca – Cognitive Research: Principles and Implications, 2024
Partially autonomous vehicles can help minimize human errors. However, being free from some driving subtasks can result in a low vigilance state, which can affect the driver's attention towards the road. The present study first tested whether drivers of partially autonomous vehicles would benefit from the addition of auditory versions of the…
Descriptors: Brain Hemisphere Functions, Diagnostic Tests, Task Analysis, Motor Vehicles
Saul Alexander Frankford – ProQuest LLC, 2021
Stuttering is a developmental speech disorder characterized by interruptions of fluency. A large body of research suggests that stuttering occurs due to a reduced ability to generate timing signals in order to sequence speech sounds. One piece of supporting evidence for this is that when speaking along with an external timing source like a…
Descriptors: Stuttering, Language Rhythm, Auditory Perception, Cognitive Processes
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Tabachnick, Alexandra R.; Toscano, Joseph C. – Journal of Speech, Language, and Hearing Research, 2018
Purpose: A central question about auditory perception concerns how acoustic information is represented at different stages of processing. The auditory brainstem response (ABR) provides a potentially useful index of the earliest stages of this process. However, it is unclear how basic acoustic characteristics (e.g., differences in tones spanning a…
Descriptors: Auditory Perception, Acoustics, Brain Hemisphere Functions, Auditory Stimuli
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Menashe, Shay – Annals of Dyslexia, 2018
The aim of this study was to gain additional knowledge about the asynchrony phenomenon in developmental dyslexia, especially when spatial selective attention is manipulated. Adults with developmental dyslexia and non-impaired readers underwent two experimental tasks, one including alphabetic stimuli (pre-lexical consonant-vowel syllables) and the…
Descriptors: Adults, Brain Hemisphere Functions, Diagnostic Tests, Attention Control
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Rouhbakhsh, Nematollah; Mahdi, John; Hwo, Jacob; Nobel, Baran; Mousave, Fati – Journal of Speech, Language, and Hearing Research, 2019
Purpose: Speech recognition in complex listening environments is enhanced by the extent of spatial separation between the speech source and background competing sources, an effect known as spatial release from masking (SRM). The aim of this study was to investigate whether the phase-locked neural activity in the central auditory pathways,…
Descriptors: Speech Communication, Auditory Discrimination, Brain Hemisphere Functions, Hearing (Physiology)
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Diaz, Michele T.; Yalcinbas, Ege – International Journal of Behavioral Development, 2021
Although hearing often declines with age, prior research has shown that older adults may benefit from multisensory input to a greater extent when compared to younger adults, a concept known as inverse effectiveness. While there is behavioral evidence in support of this phenomenon, less is known about its neural basis. The present functional MRI…
Descriptors: Brain Hemisphere Functions, Older Adults, Sensory Integration, Diagnostic Tests
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Lortie, Melissa; Proulx-Bégin, Léa; Saint-Amour, Dave; Cousineau, Dominique; Théoret, Hugo; Lepage, Jean-François – Journal of Autism and Developmental Disorders, 2017
There is debate whether social impairments in autism spectrum disorder (ASD) are truly domain-specific, or if they reflect generalized deficits in lower-level cognitive processes. To solve this issue, we used auditory-evoked EEG responses to assess novelty detection (MMN component) and involuntary attentional orientation (P3 component) induced by…
Descriptors: Autism, Pervasive Developmental Disorders, Children, Brain Hemisphere Functions
Santos-Oliveira, Daniela Cristina – ProQuest LLC, 2017
Models of speech perception suggest a dorsal stream connecting the temporal and inferior parietal lobe with the inferior frontal gyrus. This stream is thought to involve an auditory motor loop that translates acoustic information into motor/articulatory commands and is further influenced by decision making processes that involve maintenance of…
Descriptors: Human Body, Acoustics, Speech Communication, Decision Making
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Hessler, Dorte; Jonkers, Roel; Stowe, Laurie; Bastiaanse, Roelien – Brain and Language, 2013
In the current ERP study, an active oddball task was carried out, testing pure tones and auditory, visual and audiovisual syllables. For pure tones, an MMN, an N2b, and a P3 were found, confirming traditional findings. Auditory syllables evoked an N2 and a P3. We found that the amplitude of the P3 depended on the distance between standard and…
Descriptors: Auditory Stimuli, Audiovisual Aids, Phonemes, Brain Hemisphere Functions
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Motz, Benjamin A.; Erickson, Molly A.; Hetrick, William P. – Brain and Cognition, 2013
Humans perceive a wide range of temporal patterns, including those rhythms that occur in music, speech, and movement; however, there are constraints on the rhythmic patterns that we can represent. Past research has shown that sequences in which sounds occur regularly at non-metrical locations in a repeating beat period (non-integer ratio…
Descriptors: Cognitive Processes, Brain Hemisphere Functions, Acoustics, Auditory Stimuli
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Bregman, Micah R.; Patel, Aniruddh D.; Gentner, Timothy Q. – Cognition, 2012
Songbirds and humans share many parallels in vocal learning and auditory sequence processing. However, the two groups differ notably in their abilities to recognize acoustic sequences shifted in absolute pitch (pitch height). Whereas humans maintain accurate recognition of words or melodies over large pitch height changes, songbirds are…
Descriptors: Learning Processes, Singing, Auditory Perception, Acoustics
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Osnes, Berge; Hugdahl, Kenneth; Hjelmervik, Helene; Specht, Karsten – Brain and Language, 2011
A common assumption is that phonetic sounds initiate unique processing in the superior temporal gyri and sulci (STG/STS). The anatomical areas subserving these processes are also implicated in the processing of non-phonetic stimuli such as music instrument sounds. The differential processing of phonetic and non-phonetic sounds was investigated in…
Descriptors: Stimuli, Phonetics, Brain Hemisphere Functions, Cognitive Processes
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Kwon, Jeong-Tae; Jhang, Jinho; Kim, Hyung-Su; Lee, Sujin; Han, Jin-Hee – Learning & Memory, 2012
Memory is thought to be sparsely encoded throughout multiple brain regions forming unique memory trace. Although evidence has established that the amygdala is a key brain site for memory storage and retrieval of auditory conditioned fear memory, it remains elusive whether the auditory brain regions may be involved in fear memory storage or…
Descriptors: Memory, Logical Thinking, Brain Hemisphere Functions, Fear
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James, Thomas W.; VanDerKlok, Ross M.; Stevenson, Ryan A.; James, Karin Harman – Neuropsychologia, 2011
Environmental events produce many sensory cues for identifying the action that evoked the event, the agent that performed the action, and the object targeted by the action. The cues for identifying environmental events are usually distributed across multiple sensory systems. Thus, to understand how environmental events are recognized requires an…
Descriptors: Cues, Recognition (Psychology), Sensory Integration, Cognitive Processes
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Knolle, Franziska; Schroger, Erich; Baess, Pamela; Kotz, Sonja A. – Journal of Cognitive Neuroscience, 2012
Forward predictions are crucial in motor action (e.g., catching a ball, or being tickled) but may also apply to sensory or cognitive processes (e.g., listening to distorted speech or to a foreign accent). According to the "internal forward model," the cerebellum generates predictions about somatosensory consequences of movements. These predictions…
Descriptors: Brain Hemisphere Functions, Cognitive Processes, Pronunciation, Evidence
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