Predicting aphasia type from brain damage measured with structural MRI
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Multivariate Connectome-Based Symptom Mapping in Post-Stroke Patients: Networks Supporting Language and SpeechNon-invasive Brain Stimulation in the Treatment of Post-stroke and Neurodegenerative Aphasia: Parallels, Differences, and Lessons Learned.The regional neuronal activity in left posterior middle temporal gyrus is correlated with the severity of chronic aphasia.Triangulation of language-cognitive impairments, naming errors and their neural bases post-stroke.Mapping human brain lesions and their functional consequences.Enhanced estimations of post-stroke aphasia severity using stacked multimodal predictions.Lesion-symptom mapping in the study of spoken language understanding.Anatomy of aphasia revisited.Regional Brain Dysfunction Associated with Semantic Errors in Comprehension.Brain regions essential for word comprehension: Drawing inferences from patients.Contemporary Approaches to the Management of Post-stroke Apraxia of Speech.A cognitive psychometric model for assessment of picture naming abilities in aphasia.Multimodal Communication in Aphasia: Perception and Production of Co-speech Gestures During Face-to-Face Conversation.
P2860
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P2860
Predicting aphasia type from brain damage measured with structural MRI
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2015 nî lūn-bûn
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Predicting aphasia type from brain damage measured with structural MRI
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Predicting aphasia type from brain damage measured with structural MRI
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type
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Predicting aphasia type from brain damage measured with structural MRI
@ast
Predicting aphasia type from brain damage measured with structural MRI
@en
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Predicting aphasia type from brain damage measured with structural MRI
@ast
Predicting aphasia type from brain damage measured with structural MRI
@en
P2093
P2860
P1433
P1476
Predicting aphasia type from brain damage measured with structural MRI
@en
P2093
Chris Rorden
Grigori Yourganov
Julius Fridriksson
Kimberly G Smith
P2860
P304
P356
10.1016/J.CORTEX.2015.09.005
P50
P577
2015-09-25T00:00:00Z