Control of voluntary movement by the brain: contrasting roles of sensorimotor cortex, basal ganglia and cerebellum
Evarts, E.V.
Electroencephalography and Clinical Neurophysiology. Suppl 36: 385-392
1982
ISSN/ISBN: 0424-8155 PMID: 6962033 Document Number: 182894
Document emailed within 1 workday
Related Documents
Ikeda, A.; Shibasaki, H. 1995: Noninvasive study of cortical neuronal mechanism in voluntary movements: role of basal ganglia and cerebellum Rinsho Shinkeigaku 35(12): 1522-1524Perciavalle, V.; Berretta, S.; Li Volsi, G.; Polizzi, M.C. 1987: Basal ganglia influences on the cerebellum of the cat Archives Italiennes de Biologie 125(1): 29-35
Fanardzhian, V.V.; Pogosian, R.I.; Grigorian, V.G. 1972: Activity of the sensorimotor cortex neurons during stimulation of the cerebellum and pyramidal tract Zhurnal Eksperimental'noi i Klinicheskoi Meditsiny 12(4): 9-17
Kubota, K. 1987: Activity of neurons of the prefrontal cortex and voluntary movement Nihon Rinsho. Japanese Journal of Clinical Medicine 45(2): 277-283
Langmeier, M.; Giogasová, E.; Ziková, O.; Mares, J. 1986: Changes in the size and shape of the synaptic vesicles in the sensorimotor cortex of the rat brain in the initial phases of kindling Physiologia Bohemoslovaca 35(5): 437-446
Lima, F.P.S.; Lima, Mário.O.; León, D.; Falcon, C.; Cogo, J.Carlos.; Lucareli, P.R.G.; Bargalló, Núria.; Vidal, J.; Bernabeu-Guitart, M.; León-Álvarez, N.; Lucareli, J.G.A.; Junqué, C. 2010: Changes in the functional magnetic resonance imaging of the sensorimotor cortex in traumatic brain injury after intensive rehabilitation Revista de Neurologia 51(7): 403-411
Hashimoto, T. 2007: Functional models of movement disorders of basal ganglia origin and effects of functional neurosurgery Rinsho Shinkeigaku 47(11): 727-729
Hashimoto, T. 2007: Functional models of movement disorders of basal ganglia origin and effects of functional neurosurgery Rinsho Shinkeigaku 47(1): 21-26
Lelevich, S.V. 2012: Neuromediator systems of brain cortex and cerebellum under alcohol and morphine withdrawal syndrome conditions Eksperimental'naia i Klinicheskaia Farmakologiia 75(3): 26-30
Kitakami, A. 1990: Transplantation of embryonal cerebral cortex to the adult rat cerebellum: the fiber connections made by cortical transplants and the cerebellum No Shinkei Geka. Neurological Surgery 18(4): 347-353
Hanus, M.; Boisacq-Schepens, N. 1972: Organization, at the level of sensorimotor cortex neurons of the cat anesthetized with chloralose, of impulses from the contralateral cortex Archives Internationales de Physiologie et de Biochimie 80(1): 173-175
Gorbachevskaia, A.I. 2014: The analysis of the possible pathways of carrying information and its integration in the projection systems, connecting the basal ganglia with the rostromedial tegmental nucleus dog's brain Rossiiskii Fiziologicheskii Zhurnal Imeni I.M. Sechenova 100(5): 542-554
Chou, S.-W.; Pei, Y.-C.; Lai, C.-H.; Kuo, C.-H.; Fu, T.-C.; Hong, W.-H. 2005: Motor control in patients with incomplete spinal cord injuries and various voluntary movement capabilities Chang Gung Medical Journal 28(5): 349-356
Vlasova, I.G.; Kalistratov, G.F.; Uryvaev, I.V. 1977: Structural basis of frontal cortex control of thalamic and basal nuclei in dogs Arkhiv Anatomii Gistologii i Embriologii 73(11): 47-52
Hughes, A.L.; Hughes, M.K.; Watkins, D.I. 1993: Contrasting roles of interallelic recombination at the HLA-A and HLA-B loci Genetics 133(3): 669-680
Semenova, L.K.; Shumeĭko, N.S. 1994: The ensemble organization of the sensorimotor cortex in ontogeny Morfologiia 107(7-12): 39-46
Zabek, Mław.; Sławek, Jław.; Harat, M.; Koszewski, W.; Opala, G.; Friedman, A. 2006: Deep brain stimulation and motor cortex and spinal cord stimulation in the treatment of movement disorders and pain syndromes -- the theoretical baseline and practical guidelines Neurologia i Neurochirurgia Polska 40(1): 1-9
Deecke, L.; Lang, W.; Uhl, F.; Beisteiner, R.; Lindinger, G.; Cui, R.Q. 1999: Movement-related potentials and magnetic fields: new evidence for SMA activation leading Mi activation prior to voluntary movement Electroencephalography and Clinical Neurophysiology. Suppl 50: 386-401
Kruglikov, R.I.; Brodskiĭ, B.L.; Koshtoiants, O.K.; Markarova, M.I.; Chippens, G.I. 1983: Effect of a vasopressin analog on the chemoreactive properties of sensorimotor cortex neurons Biulleten' Eksperimental'noi Biologii i Meditsiny 96(10): 3-5
Rothwell, J.C.; Brown, P. 1995: The spread of myoclonic activity through sensorimotor cortex in cortical reflex myoclonus Advances in Neurology 67: 143-155