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kw.\*:("Vía motora piramidal")

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Morphometry of the pyramidal tract in the spinal cord of normal ratsARIAS, M. J; LOPEZ, J. M; CILVETI, A et al.Surgical neurology. 1987, Vol 28, Num 1, pp 38-40, issn 0090-3019Article

Course and termination of the pyramidal tract in the pigPALMIERI, G; FARINA, V; PANU, R et al.Archives d'anatomie microscopique et de morphologie expérimentale. 1986, Vol 75, Num 3, pp 167-176, issn 0003-9594Article

Superposition of antidromic responses in pyramidal tract cell clustersCANEDO, A; TOWE, A. L.Experimental neurology (Print). 1985, Vol 89, Num 3, pp 645-658, issn 0014-4886Article

Anodal-tDCS applied during unilateral strength training increases strength and corticospinal excitability in the untrained homologous muscleHENDY, Ashlee M; KIDGELL, Dawson J.Experimental brain research. 2014, Vol 232, Num 10, pp 3243-3252, issn 0014-4819, 10 p.Article

TMS reveals a direct influence of spinal projections from human SMAp on precise force productionENTAKLI, Jonathan; BONNARD, Mireille; CHEN, Sophie et al.European journal of neuroscience (Print). 2014, Vol 39, Num 1-2, pp 132-140, issn 0953-816X, 9 p.Article

RAPID PLASTICITY OF MOTOR CORTICOSPINAL SYSTEM WITH ROBOTIC REACH TRAININGKANTAK, S. S; JONES-LUSH, L. M; NARAYANAN, P et al.Neuroscience. 2013, Vol 247, pp 55-64, issn 0306-4522, 10 p.Article

Progressive multifocal leucoencephalopathy with discrete involvement of pyramidal tractSOBHA, N; SINHA, S; TALY, A. B et al.Journal of neurology, neurosurgery and psychiatry. 2005, Vol 76, Num 1, issn 0022-3050, p. 24Article

Disruption of corticospinal plasticity by 6-hydroxydopamine as measured by intracortical microstimulation in ratsCASTRO, A. J; KARTJE-TILLOTSON, G; BARNES, D et al.Brain research. 1986, Vol 389, Num 1-2, pp 295-298, issn 0006-8993Article

Axons of the pyramidal tract do not increase their transport of growth-associated proteins after axotomyREM, T. A; REDSMAW, J. D; BISBY, M. A et al.Brain research. 1987, Vol 2, Num 1, pp 1-6, issn 0006-8993Article

Cross-correlation reveals facilitation of single motor units in thenar muscles by single corticospinal neurones in the conscious monkeyMANTEL, G. W. H; LEMON, R. N.Neuroscience letters. 1987, Vol 77, Num 1, pp 113-118, issn 0304-3940Article

Somatotopic analysis of fibre and terminal distribution in the primate corticospinal pathwayDAWNAY, N. A. H; GLEES, P.Brain research. 1986, Vol 391, Num 1, pp 115-123, issn 0006-8993Article

IN AND OUT FROM THE CORTEX: DEVELOPMENT OF MAJOR FOREBRAIN CONNECTIONSLEYVA-DIAZ, E; LOPEZ-BENDITO, G.Neuroscience. 2013, Vol 254, pp 26-44, issn 0306-4522, 19 p.Article

Age-related differences in human corticospinal excitability during simple reaction timeLEVIN, Oron; CUYPERS, Koen; NETZ, Yael et al.Neuroscience letters. 2011, Vol 487, Num 1, pp 53-57, issn 0304-3940, 5 p.Article

Increased corticospinal excitability induced by unpleasant visual stimuliCOELHO, Carlos M; LIPP, Ottmar V; MARINOVIC, Welber et al.Neuroscience letters. 2010, Vol 481, Num 3, pp 135-138, issn 0304-3940, 4 p.Article

The human pyramidal syndrome ReduxTOVAR -MOLL, Fernanda; MOLL, Jorge; EDSON BRAMATI, Ivanei et al.Neuroreport (Oxford). 2007, Vol 18, Num 14, pp 1417-1421, issn 0959-4965, 5 p.Article

Fractional anisotropy correlates with auditory simple reaction time performanceBÖHR, Stefan; GÜLLMAR, Daniel; KNAB, René et al.Brain research. 2007, Vol 1186, pp 194-202, issn 0006-8993, 9 p.Article

Age-related alterations in white matter microstructure measured by diffusion tensor imagingSALAT, D. H; TUCH, D. S; DALE, A. M et al.Neurobiology of aging. 2005, Vol 26, Num 8, pp 1215-1227, issn 0197-4580, 13 p.Article

Neural progenitor cells promote corticospinal axon growth in organotypic co-culturesKAMEI, Naosuke; OISHI, Yosuke; TANAKA, Nobuhiro et al.Neuroreport (Oxford). 2004, Vol 15, Num 17, pp 2579-2583, issn 0959-4965, 5 p.Article

Corticospinal tract transection reduces H-reflex circadian rhythm in ratsXIANG YANG CHEN; LU CHEN; WOLPAW, Jonathan R et al.Brain research. 2002, Vol 942, Num 1-2, pp 101-108, issn 0006-8993Article

Modeling direct activation of corticospinal axons using transcranial electrical stimulationSUIHKO, V.Electroencephalography and clinical neurophysiology. Electromyography and motor control. 1998, Vol 109, Num 3, pp 238-244, issn 0924-980XArticle

Differences between 'congenital mirror movements' and 'associated movements' in normal children : a neurophysiological case studyREITZ, M; MÜLLER, K.Neuroscience letters. 1998, Vol 256, Num 2, pp 69-72, issn 0304-3940Article

Tropism and corticospinal target selection in the ratJOOSTEN, E. A. J; GISPEN, W. H; BÄR, P. R et al.Neuroscience. 1994, Vol 59, Num 1, pp 33-41, issn 0306-4522Article

Trajectory of redirected corticospinal axons after unilateral lesion of the sensorimotor cortex in neonatal rat; a phaseolus vulgaris-leucoagglutinin (PHA-L) tracing studyROUILLER, E. M; FENGYI LIANG; MORET, V et al.Experimental neurology (Print). 1991, Vol 114, Num 1, pp 53-65, issn 0014-4886Article

VISION AND PROPRIOCEPTION DO NOT INFLUENCE THE EXCITABILITY OF THE CORTICOMOTONEURONAL PATHWAY DURING UPRIGHT STANDING IN YOUNG AND ELDERLY ADULTSBAUDRY, S; PENZER, F; DUCHATEAU, J et al.Neuroscience. 2014, Vol 268, pp 247-254, issn 0306-4522, 8 p.Article

Corticospinal and intracortical excitability of the quadriceps in patients with knee osteoarthritisKITTELSON, Andrew J; THOMAS, Abbey C; KLUGER, Benzi M et al.Experimental brain research. 2014, Vol 232, Num 12, pp 3991-3999, issn 0014-4819, 9 p.Article

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