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1
Dynamic functional brain network connectivity during pseudoword processing relates to children’s reading skill
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2
The Jake Mendell Test as a measure of individual differences in pitch discrimination: validity and reliability properties
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3
Unsuspected Alzheimer disease in a patient with Multiple sclerosis and progressive aphasia.
In: Multiple sclerosis and related disorders, vol. 45, pp. 102349 (2020)
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4
Focal Hypoperfusion in Acute Ischemic Stroke Perfusion CT: Clinical and Radiologic Predictors and Accuracy for Infarct Prediction.
In: AJNR. American journal of neuroradiology, vol. 40, no. 3, pp. 483-489 (2019)
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5
Liver Imaging Reporting and Data System (LI-RADS) Version 2018: Imaging of Hepatocellular Carcinoma in At-Risk Patients.
In: Radiology, vol 289, iss 3 (2018)
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6
Diagnostic utility of FDG-PET in the differential diagnosis between different forms of primary progressive aphasia
In: ISSN: 1619-7070 ; European Journal of Nuclear Medicine and Molecular Imaging, Vol. 45, No 9 (2018) pp. 1526-1533 (2018)
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7
Beyond the motor impairment in dyskinetic cerebral palsy: neuropsychological and connectome-based approach
Ballester Plané, Júlia. - : Universitat de Barcelona, 2018
In: TDX (Tesis Doctorals en Xarxa) (2018)
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8
Beyond the motor impairment in dyskinetic cerebral palsy: neuropsychological and connectome-based approach
Ballester Plané, Júlia. - : Universitat de Barcelona, 2018
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9
The involvement of left inferior frontal and middle temporal cortices in word production unveiled by greater facilitation effects following brain damage.
In: Neuropsychologia, vol. 121, pp. 122-134 (2018)
Abstract: In stroke-induced aphasia, left hemispheric lesions generally disturb the word production network. The left inferior frontal gyrus (LIFG) and the left middle temporal gyrus (LMTG) are involved in word production, but their respective contribution remains ambiguous. Previous investigations have largely focused on semantic interference to gather information about word production. Here we assessed the sensitivity of twenty-five aphasic speakers with either LIFG or LMTG lesions and matched controls to both semantic facilitation and interference in word production using the picture-word (PWP) and the blocked-cyclic naming (BCNP) paradigms. In the PWP (Exp. 1), semantic facilitation was exaggerated in participants with LIFG damage as compared to age-matched controls. In the BCNP (Exp. 2), repetition priming on production speed was larger in participants with LMTG damage than in controls, without any decrease of semantic errors. In the light of the results in the PWP, the LIFG appears to be a necessary structure to shape semantic facilitation. It might play an important role in properly adjusting the lexical selection threshold within the word production network. The results in the BCNP suggest that the LMTG conveys semantic-to-lexical connections likely involved in repetition priming and in mapping concepts to their correct lexical label. As consequences, participants with LIFG lesions possibly rely more on strategic vs automatic processes to efficiently select lexical entries in semantically competitive contexts, whereas participants with LMTG might exploit residual semantic-to-lexical activation.
Keyword: Adult; Aged; Aphasia; Aphasia/diagnostic imaging; Aphasia/etiology; Aphasia/physiopathology; Female; Frontal Lobe/diagnostic imaging; Frontal Lobe/physiopathology; Humans; Language production; Left inferior frontal cortex; Left middle temporal cortex; Magnetic Resonance Imaging; Male; Middle Aged; Pattern Recognition; Repetition Priming/physiology; Semantic priming; Semantics; Speech/physiology; Stroke/complications; Stroke/diagnostic imaging; Stroke/physiopathology; Temporal Lobe/diagnostic imaging; Temporal Lobe/physiopathology; Visual/physiology; Vocabulary; Young Adult
URL: https://serval.unil.ch/notice/serval:BIB_0750601E7977
https://doi.org/10.1016/j.neuropsychologia.2018.10.026
http://nbn-resolving.org/urn/resolver.pl?urn=urn:nbn:ch:serval-BIB_0750601E79772
https://serval.unil.ch/resource/serval:BIB_0750601E7977.P001/REF.pdf
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10
Linking Entropy at Rest with the Underlying Structural Connectivity in the Healthy and Lesioned Brain.
In: Cerebral cortex, vol. 28, no. 8, pp. 2948-2958 (2018)
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11
High-Resolution, Non-Invasive Imaging of Upper Vocal Tract Articulators Compatible with Human Brain Recordings.
In: PloS one, vol 11, iss 3 (2016)
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12
Effects of HIV and childhood trauma on brain morphometry and neurocognitive function.
In: Journal of neurovirology, vol 22, iss 2 (2016)
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13
Functional Anatomy of Recognition of Chinese Multi-Character Words: Convergent Evidence from Effects of Transposable Nonwords, Lexicality, and Word Frequency
Yu, Xi; Lin, Nan; Zhang, Mingxia. - : Public Library of Science, 2016
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14
The Yin and the Yang of Prediction: An fMRI Study of Semantic Predictive Processing
Weber, Kirsten; Lau, Ellen F.; Stillerman, Benjamin. - : Public Library of Science, 2016
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15
Partly segregated cortico-subcortical pathways support phonologic and semantic verbal fluency: A lesion study.
In: Neuroscience, vol. 329, pp. 275-283 (2016)
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16
The Number of Genomic Copies at the 16p11.2 Locus Modulates Language, Verbal Memory, and Inhibition.
In: Biological psychiatry, vol. 80, no. 2, pp. 129-139 (2016)
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17
Facial landmark localization by curvature maps and profile analysis
Lippold, C. (Carsten); Liu, X. (Xiang); Wangdo, K. (Kim). - 2015
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18
Computerized analysis of coronary artery disease: Performance evaluation of segmentation and tracking of coronary arteries in CT angiograms
Zhou, Chuan; Chan, Heang‐ping; Chughtai, Aamer. - : American Association of Physicists in Medicine, 2014. : Wiley Periodicals, Inc., 2014
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19
Method for tracking eye gaze during interpretation of endoluminal 3D CT colonography: technical description and proposed metrics for analysis.
In: Symplectic Elements at Oxford ; Europe PubMed Central ; PubMed (http://www.ncbi.nlm.nih.gov/pubmed/) ; Web of Science (Lite) (http://apps.webofknowledge.com/summary.do) ; Scopus (http://www.scopus.com/home.url) ; CrossRef (2013)
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20
Method for tracking eye gaze during interpretation of endoluminal 3D CT colonography: technical description and proposed metrics for analysis.
In: Radiology , 267 (3) pp. 924-931. (2013) (2013)
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