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Combined fMRI Region- and Network-Analysis Reveal New Insights of Top-Down Modulation of Bottom-Up Processes in Auditory Laterality
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In: Front Behav Neurosci (2022)
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Evaluation of a Simple Clinical Language Paradigm With Respect to Sensory Independency, Functional Asymmetry, and Effective Connectivity
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In: Front Behav Neurosci (2022)
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Reduced grey- and white matter volumes due to unilateral hearing loss following treatment for vestibular schwannoma
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In: Heliyon (2020)
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Effects of Facial Symmetry and Gaze Direction on Perception of Social Attributes: A Study in Experimental Art History
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Therapy-induced brain reorganization patterns in aphasia
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In: Brain. - 138, 4 (2015) , 1097-1112, ISSN: 1460-2156 (2015)
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Functional asymmetry and effective connectivity of the auditory system during speech perception is modulated by the place of articulation of the consonant- A 7T fMRI study
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Mapping a lateralization gradient within the ventral stream for auditory speech perception
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Abstract:
Recent models on speech perception propose a dual-stream processing network, with a dorsal stream, extending from the posterior temporal lobe of the left hemisphere through inferior parietal areas into the left inferior frontal gyrus, and a ventral stream that is assumed to originate in the primary auditory cortex in the upper posterior part of the temporal lobe and to extend toward the anterior part of the temporal lobe, where it may connect to the ventral part of the inferior frontal gyrus. This article describes and reviews the results from a series of complementary functional magnetic resonance imaging studies that aimed to trace the hierarchical processing network for speech comprehension within the left and right hemisphere with a particular focus on the temporal lobe and the ventral stream. As hypothesized, the results demonstrate a bilateral involvement of the temporal lobes in the processing of speech signals. However, an increasing leftward asymmetry was detected from auditory–phonetic to lexico-semantic processing and along the posterior–anterior axis, thus forming a “lateralization” gradient. This increasing leftward lateralization was particularly evident for the left superior temporal sulcus and more anterior parts of the temporal lobe.
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Keyword:
Neuroscience
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URL: http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3788379 http://www.ncbi.nlm.nih.gov/pubmed/24106470 https://doi.org/10.3389/fnhum.2013.00629
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Structural and Functional Reorganization of the Corpus Callosum between the Age of 6 and 8 Years
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Structural and Functional Reorganization of the Corpus Callosum between the Age of 6 and 8 Years
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Structural and Functional Reorganization of the Corpus Callosum between the Age of 6 and 8 Years
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Functional Relevance of Interindividual Differences in Temporal Lobe Callosal Pathways: A DTI Tractography Study
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Functional Relevance of Interindividual Differences in Temporal Lobe Callosal Pathways: A DTI Tractography Study
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Auditory Hallucinations in Schizophrenia: The Role of Cognitive, Brain Structural and Genetic Disturbances in the Left Temporal Lobe
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