Language alterations in subcortical lesions: New concepts

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2011
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BENTHAM SCIENCE PUBLISHERS LTD.
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Radanovic, M.; Mansur, L. L.. Language alterations in subcortical lesions: New concepts. In: . Language Disturbances in Adulthood: New Advances from the Neurolinguistics Perspective: BENTHAM SCIENCE PUBLISHERS LTD., 2011. p.71-84.
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The role of subcortical structures in language processing is a topic of intense debate in the literature. Language alterations resulting from subcortical damage, such as the basal ganglia and thalamus do not produce classical aphasia syndromes as those encountered in cortical lesions. Basal ganglia lesions (caudate nucleus, putamen, globus pallidus) produce a complex and varied symptomatology regarding language manifestations, being the more consistent an alteration in lexical selection processes. More recent theories implicate the striatum in sequential and computational aspects of language processing, combinatorial rule applications and procedural learning (which are related to morphology and syntax), as well as stuttering. Thalamic aphasias present a more homogeneous pattern, where anomia and semantic paraphasias predominate, pointing to the role of the thalamus in mechanisms of cortical engagement and semantic verification. There has been increasing evidence of the participation of the cerebellum in language processing. Among the language deficits found after cerebellar lesions are delay in language acquisition, deficits in speech initiation, and mutism. Other previously reported language alterations include deficits in speech production, such as short responses, difficulties in initiating a conversation, long latencies for answers, and word finding difficulties. © 2011 Bentham Science Publishers. All rights reserved.
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Basal ganglia, Cerebellum., Subcortical aphasia, Thalamus
Referências
  1. Ackermann H., Mathiak K., Riecker A., The contribution of the cerebellum to speech production and speech perception: clinical and functional imaging data, The Cerebellum, 6, pp. 202-213, (2007)
  2. Alexander G.E., DeLong M.R., Strick P.L., Parallel organization of functionally segregated circuits linking basal ganglia and cortex, Annual Review of Neuroscience, 9, pp. 357-381, (1986)
  3. Alexander M.P., Naeser M.A., Palumbo C.L., Correlations of subcortical CT lesion and aphasia profiles, Brain, 110, pp. 961-991, (1987)
  4. Allen G., McColl R., Barnard H., Ringe W.K., Fleckenstein J., Cullum C.M., Magnetic resonance imaging of cerebellar-prefrontal and cerebellar-parietal functional connectivity, Neuroimage, 28, pp. 39-48, (2005)
  5. Baddeley A.D., Working memory, Thought and Action, (2007)
  6. Baillieux H., Smet D.J.H., Paquier P.F., Deyn D.P.P., Marien P., Cerebellar neurocognition: insights into the bottom of the brain, Clinical Neurology and Neurosurgery, 110, pp. 763-773, (2008)
  7. Botez-marquard T., Leveille J., Botez M.I., Neuropsychological functioning in unilateral cerebellar damage, The Canadian Journal of Neurological Sciences, 21, pp. 353-357, (1994)
  8. Boutsen F.R., Christman S.S., Prosody in apraxia of speech, Seminars in Speech and Language, 23, pp. 245-256, (2002)
  9. Braak H., Tredici D.K., Rub U., De Vos R.A.I., Steur J.H.E.N., Braak E., Staging of brain pathology related to sporadic Parkinson's disease, Neurobiology of Aging, 24, pp. 197-211, (2003)
  10. Bracha V., Zhao L., Irwin K.B., Bloedel J.R., The human cerebellum and associative learning: dissociation between the acquisition, retention and extinction of conditioned eyeblinks, Brain Research, 860, pp. 87-94, (2000)
  11. Brendel B., Hertrich I., Erb M., Lindner A., Riecker A., Grodd W., Ackermann H., The contribution of mesiofrontal cortex to the preparation and execution of repetitive syllable productions: An fMRI study, Neuroimage, 50, pp. 1219-1230, (2010)
  12. Broadbent G., On the Cerebral Mechanisms of Speech and Thought, London, (1872)
  13. Cabeza R., Nyberg L., Imaging cognition II: an empirical review of 275 PET and fMRI studies, Journal of Cognitive Neuroscience, 12, pp. 1-47, (2000)
  14. Cappa S.F., Vignolo L.A., Transcortical"" features of aphasia following left thalamic hemorrhage, Cortex, 15, pp. 121-130, (1979)
  15. Catsman-berrevoets C.E., Dongen V.R.H., Mulder P.G.H., Geuze D.P.Y., Paquier P.F., Lequin M.H., Tumour type and size are high risk factors for the syndrome of ""cerebellar"" mutism and subsequent dysarthria, Journal of Neurology, Neurosurgery, and Psychiatry, 67, pp. 755-757, (1999)
  16. Chein J.M., Fissell K., Jacobs S., Fiez J.A., Functional heterogeneity within Broca's area during verbal working memory, Physiology and Behavior, 77, pp. 635-639, (2002)
  17. Chiricozzi F.R., Clausi S., Molinari M., Leggio M.G., Phonological short-term store impairment after cerebellar lesion: A single case study, Neuropsychologia, 46, pp. 1940-1953, (2008)
  18. Cohen H., Language impairment in Parkinson's Disease, pp. 475-483, (1998)
  19. Collette F., Olivier L., Van Der Linden M., Involvement of both prefrontal and inferior parietal cortex in dual task performance, Cognitive Brain Research, 24, pp. 237-251, (2005)
  20. Cook M., Murdoch B., Cahill L., Whelan B., Higher-level language deficits resulting from left primary cerebellar lesions, Aphasiology, 18, pp. 771-784, (2004)
  21. Crosson B., Role of dominant thalamus in language: a review, Psychological Bulletin, 96, pp. 491-517, (1984)
  22. Crosson B., Subcortical functions in language: a working model, Brain and Language, 25, pp. 257-292, (1985)
  23. Damasio A.R., Damasio H., Aphasia and the neural basis of language, pp. 294-313, (2000)
  24. Damasio A.R., Damasio H., Rizzo M., Varney N., Gersh F., Aphasia with nonhemorrhagic lesions in the basal ganglia and internal capsule, Archives of Neurology, 39, pp. 15-20, (1982)
  25. Dolan R.J., A cognitive affective role for the cerebellum, Brain, 121, pp. 545-546, (1998)
  26. Doya K., Complementary roles of basal ganglia and cerebellum in learning and motor control, Current Opinion in Neurobiology, 10, pp. 732-739, (2000)
  27. Doyon J., Bellec P., Amsel R., Penhune V., Monchi O., Carrier J., Lehericy S., Benali H., Contributions of the basal ganglia and functionally related brain structures to motor learning, Behavioural Brain Research, 199, pp. 61-75, (2009)
  28. Dronkers N., Wilkins D., Valin V.R., Redfern B., Jaeger J., Lesion analysis of the brain areas involved in language comprehension, Cognition, 92, pp. 145-177, (2004)
  29. Duffy J.R., Motor Speech Disorders: substrates, differential diagnosis and management, (2005)
  30. Durisko C., Fiez J.A., Functional activation in the cerebellum during working memory and simple speech tasks, Cortex, 46, pp. 896-906, (2010)
  31. Fiez J.A., Peterson S.E., Cheney M.K., Raichle M.E., Impaired non-motor learning and error detection associated with cerebellar damage, A single case study. Brain, 115, pp. 155-178, (1992)
  32. Fisher C.M., The pathologic and clinical aspects of thalamic hemorrhage, Transactions of the American Neurological Association, 84, pp. 56-59, (1959)
  33. Geschwind N., Discussion, (1967)
  34. Giraud A.L., Neumann K., Bachoud-levi A.C., Von Gudenberg W.A., Euler H.A., Lanfermann H., Preibisch C., Severity of dysfluency correlates with basal ganglia activity in persistent developmental stuttering, Brain and Language, 104, pp. 190-199, (2008)
  35. Goodglass H., Kaplan E., Evaluación de la Afasia y de Trastornos Relacionados, Madrid: Editorial Médica Panamericana, (1996)
  36. Gottwald B., Mihajlovic Z., Wilde B., Mehdorn H.M., Does the cerebellum contribute to specific aspects of attention?, Neuropsychologia, 41, pp. 1452-1460, (2003)
  37. Gronholm P., Rinne J.O., Vorobyev V., Leine M., Naming of newly learned objects: a PET activation study, Cognitive Brain Research, 25, pp. 359-371, (2005)
  38. Henson R.N., Burgess N., Frith C.D., Recoding, storage, rehearsal and grouping in verbal short-term memory: an fMRI study, Neuropsychologia, 38, pp. 426-440, (2000)
  39. Kent R.D., Duffy J.R., Slama A., Kent J.F., Clift A., Clinicoanatomic studies in dysarthria: review, critique and directions for research, Journal of Speech, Language, and Hearing Research, 44, pp. 535-551, (2001)
  40. Ketteler D., Kastrau F., Vohn R., Huber W., The subcortical role of language processing, High level linguistic features such as ambiguity-resolution and the human brain
  41. an fMRI study. Neuroimage, 39, pp. 2002-2009, (2008)
  42. Krienen F.M., Buckner R.L., Segregated fronto-cerebellar circuits revealed by intrinsic functional connectivity, Cerebral Cortex, 19, pp. 2485-2497, (2009)
  43. Kussmaul A., Disturbances of speech, Cyclopedie Practice Medicine, 14, (1877)
  44. Lazzarino L.G., Nicolai A., Valassi F., Biasizzo E., Language disturbances from mesencephalo-thalamic infarcts, Identification of thalamic nuclei by CT-reconstruction. Neuroradiology, 33, pp. 300-304, (1991)
  45. Leiner H.C., Leiner A.L., Dow R.S., Reappraising the cerebellum: what does the hindbrain contribute to the forebrain?, Behavioral Neuroscience, 103, pp. 998-1008, (1989)
  46. Levisohn L., Cronin-golomb A., Schmahmann J.D., Neuropsychological consequences of cerebellar tumour resection in children: cerebellar cognitive affective syndrome in a paediatric population, Brain, 123, pp. 1041-1050, (2000)
  47. Lichtheim L., On aphasia, Brain, 7, pp. 433-484, (1885)
  48. Lie C.H., Specht K., Marshall J.C., Using fMRI to decompose the neural processes underlying the Wisconsin Card Sorting Test, Neuroimage, 30, pp. 1038-1049, (2006)
  49. Luria A.R., On quasi-aphasic speech disturbances in lesions of the deep structures of the brain, Brain and Language, 4, pp. 432-459, (1977)
  50. Marie P., The third left frontal convolution plays no special role in the function of language, (1906)
  51. McFarling D., Rothi L.J., Heilman K.M., Transcortical aphasia from ischaemic infarcts of the thalamus: a report of two cases, Journal of Neurology Neurosurgery and Psychiatry, 45, pp. 107-112, (1982)
  52. Mega M.S., Alexander M.P., Subcortical aphasia: the core profile of capsulostriatal infarction, Neurology, 44, pp. 1824-1829, (1994)
  53. Mello L.E.A.M., Villares J., Neuroanatomy of the basal ganglia, 20, pp. 691-704, (1997)
  54. Metter E.J., Riege W.H., Hanson W.R., Kuhl D.E., Phelps M.E., Squire L.R., Wasterlain C.G., Benson D.F., Comparison of metabolic rates, language, and memory in subcortical aphasias, Brain and Language, 19, pp. 33-47, (1983)
  55. Molinari M., Petrosini L., Misciagna S., Leggio M.G., Visuospatial abilities in cerebellar disorders, Journal of Neurology, Neurosurgery, and Psychiatry, 75, pp. 235-240, (2004)
  56. Muller N.G., Knight R.T., The functional neuroanatomy of working memory: contributions of human brain lesion studies, Neuroscience, 139, pp. 51-58, (2006)
  57. Nadeau S.E., Subcortical language mechanisms, pp. 329-340, (2008)
  58. Nadeau S.E., Crosson B., Subcortical aphasia, Brain and Language, 58, pp. 355-402, (1997)
  59. Naeser M.A., Alexander M.P., Helm-estabrooks N., Levine H.L., Laughlin S.A., Geschwind N., Aphasia with predominantly subcortical lesion site, Archives of Neurology, 39, pp. 2-14, (1982)
  60. Naeser M.A., Palumbo C.L., Helm-estabrooks N., Stiassny-eder D., Albert M.L., Severe nonfluency in aphasia, Brain, 112, pp. 1-38, (1989)
  61. Neau J.P., Arroyo-anllo E., Bonnaud V., Ingrand P., Gil R., Neuropsychological disturbances in cerebellar infarcts, Acta Neurologica Scandinavica, 102, pp. 363-370, (2000)
  62. Ojemann G., Brain organization for language from the perspective of electrical stimulation mapping, The Behavioral and Brain Sciences, 6, pp. 189-230, (1983)
  63. Paquier P., Marien P., A synthesis of the role of the cerebellum in cognition, Aphasiology, 19, pp. 3-19, (2005)
  64. Peeva M.G., Guenther F.H., Tourville J.A., Nieto-castanon A., Anton J.L., Nazarian B., Alario F.X., Distinct representations of phonemes, syllables, and supra-syllabic sequences in the speech production network, Neuroimage, 50, pp. 626-638, (2010)
  65. Penfield W., Roberts L., Speech and Brain Mechanisms, (1959)
  66. Perani D., Vallar G., Cappa S., Messa C., Fazio F., Aphasia and neglect after subcortical stroke, Brain, 110, pp. 1211-1229, (1987)
  67. Petersen S.E., Fox P.T., Posner M.I., Mintun M.A., Raichle M.E., Positron emission tomographic studies of the cortical anatomy of single-word processing, Nature, 331, pp. 585-589, (1988)
  68. Ravizza S.M., McCormick C.A., Schlerf J.E., Justus T., Ivry R.B., Fiez J.A., Cerebellar damage produces selective deficits in verbal working memory, Brain, 129, pp. 306-320, (2006)
  69. Reynolds A.F., Turner P.T., Harris A.B., Ojemann G.A., Davis L.E., Left thalamic hemorrhage with dysphasia: A report of five cases, Brain and Language, 7, pp. 62-73, (1979)
  70. Riecker A., Mathiak K., Wildgruber D., Erb M., Hertrich I., Grodd W., Ackermann H., fMRI reveals two distinct cerebral networks subserving speech motor control, Neurology, 64, pp. 700-706, (2005)
  71. Riklan M., Cooper I.S., Psychometric studies of verbal functions following thalamic lesions in humans, Brain and Language, 2, pp. 45-64, (1975)
  72. Samra K., Riklan M., Levita E., Zimmerman J., Waltz J.M., Bergmann L., Cooper I.S., Language and speech correlates of anatomically verified lesions in thalamic surgery for Parkinsonism, Journal of Speech and Hearing Research, 12, pp. 510-540, (1969)
  73. Schmahmann J.D., Pandya D.N., Anatomic organization of the basilar pontine projections from prefrontal cortices in rhesus monkey, Journal of Neuroscience, 17, pp. 438-458, (1997)
  74. Schmahmann J.D., Pandya D.N., Posterior parietal projections to the basis pontis in rhesus monkey: Possible anatomical substrate for the cerebellar modulation of complex behavior?, Neurology, 37, SUPPL. 1, (1987)
  75. Schmahmann J.D., Pandya D.N., Projections to the basis pontis from the superior temporal sulcus and superior temporal region in the Rhesus monkey, The Journal of Comparative Neurology, 308, pp. 224-248, (1991)
  76. Schmahmann J.D., Pandya D.N., Course of the fiber pathways to pons from parasensory association areas in the Rhesus monkey, The Journal of Comparative Neurology, 326, pp. 159-179, (1992)
  77. Schmahmann J.D., Pandya D.N., Prelunate, occipitotemporal, and parahipppocampal projections to the basis pontis in rhesus monkey, The Journal of Comparative Neurology, 337, pp. 94-112, (1993)
  78. Schuell H., Jenkins J.J., Jimenez-pabon E., Aphasia in Adults, (1965)
  79. Silveri M.C., Leggio M.G., Molinari M., The cerebellum contributes to linguistic production: a case of agrammatic speech following a right cerebellar lesion, Brain, 121, pp. 2175-2187, (1994)
  80. Silveri M.C., Misciagna S., Terrezza G., Right side neglect in right cerebellar lesion, Journal of Neurology, Neurosurgery, and Psychiatry, 71, pp. 114-117, (2001)
  81. Skeel R.J., Crosson B., Nadeau S.E., Algina J., Bauer R.M., Fennell E.B., Basal ganglia dysfunction, working memory, and sentence comprehension in patients with Parkinson's disease, Neuropsychologia, 39, pp. 962-971, (2001)
  82. Smith E.E., Jonides J., Marshuetz C., Koeppe R.A., Components of verbal working memory: evidence from neuroimaging, Proceedings of the National Academy of Sciences of the United States of America, 95, pp. 876-882, (1998)
  83. Stoodley C.J., Schmahmann J.D., Evidence for topographic organization in the cerebellum of motor control versus cognitive and affective processing, Cortex, 46, pp. 831-844, (2010)
  84. Strick P.L., Dum R.P., Fiez J.A., Cerebellum and nonmotor function, Annual Review of Neuroscience, 32, pp. 413-434, (2009)
  85. Teichmann M., Dupoux E., Cesaro P., Bachoud-levi A.C., The role of the striatum in sentence processing: evidence from a priming study in early stages of Huntington's disease, Neuropsychologia, 46, pp. 174-185, (2008)
  86. Vallar G., Perani D., Cappa S.F., Messa C., Lenzi G.L., Fazio F., Recovery from aphasia and neglect after subcortical stroke: neuropsychological and cerebral perfusion study, Journal of Neurology, Neurosurgery. and Psychiatry, 51, pp. 1269-1276, (1988)
  87. Wallesch C.-W., Papagno C., Subcortical aphasia, pp. 256-287, (1988)
  88. Weiller C., Isensee C., Rijntjes M., Huber W., Muller S., Bier D., Dutschka K., Woods R.P., Noth J., Diener H.C., Recovery from Wernicke's aphasia: a Positron Emission Tomographic study, Annals of Neurology, 37, pp. 723-732, (1995)
  89. Wernicke C., Der aphasische Symptomencomplex, (1874)
  90. Yingling C.D., Skinner J.E., Gating of thalamic input to cerebral cortex by nucleus reticularis thalami, 1, pp. 70-96, (1977)