Prolegomena to a Neurocomputational Architecture for Human Grammatical Encoding and Decoding

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Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
Kempen, Verb-second word order after German weil 'because': Psycholinguistic theory from corpus-linguistic data
Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
PDF] Compensating for Language Deficits in Amnesia II: H.M.'s Spared versus Impaired Encoding Categories
Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
PDF) From sentence structure to intonation contour
Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
A) Illustration of Complementary Learning System. EC, CA1, and the
Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
Left: A picture of a woman hitting a man (original image from
Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
The neurobiology of syntax: beyond string sets Philosophical Transactions of the Royal Society B: Biological Sciences
Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
Shared Language: Overlap and Segregation of the Neuronal Infrastructure for Speaking and Listening Revealed by Functional MRI - Laura Menenti, Sarah M. E. Gierhan, Katrien Segaert, Peter Hagoort, 2011
Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
Absolute and relative use frequency of Study 1 lexical categories
Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
Frontiers Syntactic flexibility and planning scope: the effect of verb bias on advance planning during sentence recall
Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
A) Lateral/Medial pathways as implemented in the model (B) PRc and PHc
Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
The effect of changing (A) the amount of inhibition in DG proximal, and
Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
PDF] Compensating for Language Deficits in Amnesia II: H.M.'s Spared versus Impaired Encoding Categories
Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
The neurobiology of syntax: beyond string sets Philosophical Transactions of the Royal Society B: Biological Sciences
Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
A) Lateral/Medial pathways as implemented in the model (B) PRc and PHc
Prolegomena to a Neurocomputational Architecture for Human Grammatical  Encoding and Decoding
PDF] The neurobiology of syntax: beyond string sets
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