Cerebellum and Detection of Sequences, from Perception to Cognition

Marco Molinari1, Francesca R. Chiricozzi2, Silvia Clausi2, Anna Maria Tedesco2, Mariagrazia De Lisa3, Maria Leggio2
1Experimental Neurorehabilitation and Ataxia Labs, I.R.C.C.S. Santa Lucia Foundation, Rome, Italy
2Department of Psychology, Sapienza University of Rome, and Ataxia Labs, I.R.C.C.S. Santa Lucia Foundation, Rome, Italy
3Department of Neurosciences, Catholic University, Rome, Italy

Tóm tắt

Từ khóa


Tài liệu tham khảo

Molinari M, Filippini V, Leggio MG (2002) Neuronal plasticity of interrelated cerebellar and cortical networks. Neuroscience 111:863–870

Schmahmann JD, Sherman JC (1998) The cerebellar cognitive affective syndrome. Brain 121(Pt 4):561–579

Ramnani N (2006) The primate cortico-cerebellar system: anatomy and function. Nat Rev Neurosci 7:511–522

Ito M (2005) Bases and implications of learning in the cerebellum—adaptive control and internal model mechanism. Prog Brain Res 148:95–109

Braitenberg V, Heck D, Sultan F (1997) The detection and generation of sequences as a key to cerebellar function: experiments and theory. Behav Brain Sci 20:229–277

Molinari M, Petrosini L (1997) Is sequence in/sequence out a cerebellar mode of operation in cognition too? Behav Brain Sci 20:259–260

Leggio MG, Molinari M, Neri P, Graziano A, Mandolesi L, Petrosini L (2000) Representation of actions in rats: the role of cerebellum in learning spatial performances by observation. Proc Natl Acad Sci U S A 97:2320–2325

Molinari M, Petrosini L, Grammaldo LG (1997) Spatial event processing. Int Rev Neurobiol 41:217–230

Petrosini L, Graziano A, Mandolesi L, Neri P, Molinari M, Leggio MG (2003) Watch how to do it! New advances in learning by observation. Brain Res Brain Res Rev 42:252–264

Leggio MG, Neri P, Graziano A, Mandolesi L, Molinari M, Petrosini L (1999) Cerebellar contribution to spatial event processing: characterization of procedural learning. Exp Brain Res 127:1–11

Molinari M, Leggio MG, Solida A, Ciorra R, Misciagna S, Silveri MC, Petrosini L (1997) Cerebellum and procedural learning: evidence from focal cerebellar lesions. Brain 120:1753–1762

Molinari M, Leggio MG, De Martin M, Cerasa A, Thaut M (2003) Neurobiology of rhythmic motor entrainment. Ann N Y Acad Sci 999:313–321

Molinari M, Petrosini L, Misciagna S, Leggio MG (2004) Visuospatial abilities in cerebellar disorders. J Neurol Neurosurg Psychiatr 75:235–240

Molinari M, Leggio MG (2007) Cerebellar information processing and visuospatial functions. Cerebellum 6:214–220

Restuccia D, Della MG, Valeriani M, Leggio MG, Molinari M (2007) Cerebellar damage impairs detection of somatosensory input changes. A somatosensory mismatch-negativity study. Brain 130:276–287

Timmann D, Drepper J, Calabrese S, Burgerhoff K, Maschke M, Kolb FP, Daum I, Diener HC (2004) Use of sequence information in associative learning in control subjects and cerebellar patients. Cerebellum 3:75–82

Doyon J, Gaudreau D, Laforce R Jr, Castonguay M, Bedard PJ, Bedard F, Bouchard JP (1997) Role of the striatum, cerebellum, and frontal lobes in the learning of a visuomotor sequence. Brain Cogn 34:218–245

Nixon PD, Passingham RE (2000) The cerebellum and cognition: cerebellar lesions impair sequence learning but not conditional visuomotor learning in monkeys. Neuropsychologia 38:1054–1072

Doyon J, Penhune V, Ungerleider LG (2003) Distinct contribution of the cortico-striatal and cortico-cerebellar systems to motor skill learning. Neuropsychologia 41:252–262

Di Lazzaro V, Restuccia D, Nardone R, Leggio MG, Oliviero A, Profice P, Tonali P, Molinari M (1995) Motor cortex changes in a patient with hemicerebellectomy. Electroencephalogr Clin Neurophysiol 97:259–263

Di Lazzaro V, Molinari M, Restuccia D, Leggio MG, Nardone R, Fogli D, Tonali P (1994) Cerebro-cerebellar interactions in man: neurophysiological studies in patients with focal cerebellar lesions. Electroencephalogr Clin Neurophysiol 93:27–34

Iwata NK, Hanajima R, Furubayashi T, Terao Y, Uesugi H, Shiio Y, Enomoto H, Mochizuki H, Kanazawa I, Ugawa Y (2004) Facilitatory effect on the motor cortex by electrical stimulation over the cerebellum in humans. Exp Brain Res 159:418–424

Holdefer RN, Miller LE, Chen LL, Houk JC (2000) Functional connectivity between cerebellum and primary motor cortex in the awake monkey. J Neurophysiol 84:585–590

Nixon PD (2003) The role of the cerebellum in preparing responses to predictable sensory events. Cerebellum 2:114–122

Bower JM, Parsons LM (2003) Rethinking the “lesser brain”. Sci Am 289:50–57

Ben Taib NO, Manto M, Pandolfo M, Brotchi J (2005) Hemicerebellectomy blocks the enhancement of cortical motor output associated with repetitive somatosensory stimulation in the rat. J Physiol 567:293–300

Oulad bT, Manto M, Laute MA, Brotchi J (2005) The cerebellum modulates rodent cortical motor output after repetitive somatosensory stimulation. Neurosurgery 56:811–820

Luft AR, Kaelin-Lang A, Hauser TK, Buitrago MM, Thakor NV, Hanley DF, Cohen LG (2002) Modulation of rodent cortical motor excitability by somatosensory input. Exp Brain Res 142:562–569

Floel A, Nagorsen U, Werhahn KJ, Ravindran S, Birbaumer N, Knecht S, Cohen LG (2004) Influence of somatosensory input on motor function in patients with chronic stroke. Ann Neurol 56:206–212

Schmahmann JD, Pandya DN (1989) Anatomical investigation of projections to the basis pontis from posterior parietal association cortices in rhesus monkey. J Comp Neurol 289:53–73

Giannetti S, Molinari M (2002) Cerebellar input to the posterior parietal cortex in the rat. Brain Res Bull 58:481–489

Allen G, McColl R, Barnard H, Ringe WK, Fleckenstein J, Cullum CM (2005) Magnetic resonance imaging of cerebellar-prefrontal and cerebellar–parietal functional connectivity. Neuroimage 28:39–48

Restuccia D, Valeriani M, Barba C, Le Pera D, Capecci M, Filippini V, Molinari M (2001) Functional changes of the primary somatosensory cortex in patients with unilateral cerebellar lesions. Brain 124:757–768

Tesche CD, Karhu JJ (2000) Anticipatory cerebellar responses during somatosensory omission in man [see comments]. Hum Brain Mapp 9:119–142

Ivry R (2000) Exploring the role of the cerebellum in sensory anticipation and timing: commentary on Tesche and Karhu [comment]. Hum Brain Mapp 9:115–118

Ackermann H, Mathiak K, Riecker A (2007) The contribution of the cerebellum to speech production and speech perception: clinical and functional imaging data. The Cerebellum 6:202–213

Bastian AJ (2006) Learning to predict the future: the cerebellum adapts feed forward movement control. Curr Opin Neurobiol 16:645–649

Leggio MG, Tedesco AM, Chiricozzi FR, Clausi S, Orsini A, Molinari M (2008) Cognitive sequencing impairment in patients with focal or atrophic cerebellar damage. Brain 131:1332–1343

Orsini A, Laicardi C (2000) Factor structure of the Italian version of the WAIS-R compared with the American standardization. Percept Mot Skills 90:1091–1100

Fiez JA, Petersen SE, Cheney MK, Raichle ME (1992) Impaired non-motor learning and error detection associated with cerebellar damage. A single case study. Brain 115(Pt 1):155–178

Leggio MG, Silveri MC, Petrosini L, Molinari M (2000) Phonological grouping is specifically affected in cerebellar patients: a verbal fluency study. J Neurol Neurosurg Psychiatr 69:102–106

Chiricozzi FR, Clausi S, Molinari M, Leggio MG (2008) Phonological short-term store impairment after cerebellar lesion: a single case study. Neuropsychologia 46:1940–1953

Middleton FA, Strick PL (1997) Cerebellar output channels. Int Rev Neurobiol 41:61–82

Picard H, Amado I, Mouchet-Mages S, Olié J-P, Krebs MO (2008) The role of the cerebellum in schizophrenia: an update of clinical, cognitive, and functional evidences. Schizophr Bull 34:155–172

Allen G (2006) Cerebellar contributions to autism spectrum disorders. Clin Neurosci Res 6:195–207

Sirigu A, Cohen L, Zalla T, Pradat-Diehl P, Van Eeckhout P, Grafman J, Agid Y (1998) Distinct frontal regions for processing sentence syntax and story grammar. Cortex 34:771–778

Tinaz S, Schendan HE, Schon K, Stern CE (2006) Evidence for the importance of basal ganglia output nuclei in semantic event sequencing: an fMRI study. Brain Res 1067:239–249

Sailer U, Eggert T, Straube A (2005) Impaired temporal prediction and eye–hand coordination in patients with cerebellar lesions. Behav Brain Res 160:72–87

Pollok B, Gross J, Kamp D, Schnitzler A (2008) Evidence for anticipatory motor control within a cerebello-diencephalic-parietal network. J Cogn Neurosci 20:828–840

O'Reilly JX, Mesulam MM, Nobre AC (2008) The cerebellum predicts the timing of perceptual events. J Neurosci 28:2252–2260

Cattaneo L, Fabbri-Destro M, Boria S, Pieraccini C, Monti A, Cossu G, Rizzolatti G (2007) Impairment of actions chains in autism and its possible role in intention understanding. Proc Natl Acad Sci U S A 104:17825–17830

Allen DN, Strauss GP, Donohue B, van Kammen DP (2007) Factor analytic support for social cognition as a separable cognitive domain in schizophrenia. Schizophr Res 93:325–333

Geier CF, Garver KE, Luna B (2007) Circuitry underlying temporally extended spatial working memory. Neuroimage 35:904–915

Ravizza SM, McCormick CA, Schlerf JE, Justus T, Ivry RB, Fiez JA (2006) Cerebellar damage produces selective deficits in verbal working memory. Brain 129:306–320