Disinhibition as a basic process in the expression of striatal functions
暂无分享,去创建一个
[1] J. Penney,et al. The functional anatomy of basal ganglia disorders , 1989, Trends in Neurosciences.
[2] L. Tremblay,et al. Responses of pallidal neurons to striatal stimulation in intact waking monkeys , 1989, Brain Research.
[3] L. Schmued,et al. Collateralization and GAD immunoreactivity of descending pallidal efferents , 1989, Brain Research.
[4] O. Hikosaka,et al. Functional properties of monkey caudate neurons. I. Activities related to saccadic eye movements. , 1989, Journal of neurophysiology.
[5] O. Hikosaka,et al. Eye movements induced by microinjection of GABA agonist in the rat substantia nigra pars reticulata , 1989, Neuroscience Research.
[6] H. Kita,et al. Glutamate decarboxylase immunoreactive neurons in rat neostriatum: their morphological types and populations , 1988, Brain Research.
[7] D. Swaab,et al. Handbook of chemical neuroanatomy — GABA and neuropeptides in the CNS A. Björklund and T. Hökfelt (eds.), part I, Elsevier, Amsterdam, 1985 , 1987, Journal of the Neurological Sciences.
[8] J. Schneider,et al. Basal ganglia and behavior : sensory aspects of motor functioning , 1987 .
[9] C. D. Stern,et al. Handbook of Chemical Neuroanatomy Methods in Chemical Neuroanatomy. Edited by A. Bjorklund and T. Hokfelt. Elsevier, Amsterdam, 1983. Cloth bound, 548 pp. UK £140. (Volume 1 in the series). , 1986, Neurochemistry International.
[10] André Parent,et al. Comparative neurobiology of the basal ganglia , 1986 .
[11] G. E. Alexander,et al. Parallel organization of functionally segregated circuits linking basal ganglia and cortex. , 1986, Annual review of neuroscience.
[12] D L Sparks,et al. Translation of sensory signals into commands for control of saccadic eye movements: role of primate superior colliculus. , 1986, Physiological reviews.
[13] A K Moschovakis,et al. Nigral inhibitory termination on efferent neurons of the superior colliculus: An intracellular horseradish peroxidase study in the cat , 1985, The Journal of comparative neurology.
[14] G. M. Stern. Functions of the Basal Ganglia CIBA Foundation Symposium 107 , 1985 .
[15] J. Deniau,et al. Disinhibition as a basic process in the expression of striatal functions. II. The striato-nigral influence on thalamocortical cells of the ventromedial thalamic nucleus , 1985, Brain Research.
[16] J. Deniau,et al. Disinhibition as a basic process in the expression of striatal functions. I. The striato-nigral influence on tecto-spinal/tecto-diencephalic neurons , 1985, Brain Research.
[17] R. Wurtz,et al. Modification of saccadic eye movements by GABA-related substances. II. Effects of muscimol in monkey substantia nigra pars reticulata. , 1985, Journal of neurophysiology.
[18] H. Oka,et al. Nigral inputs to the pedunculopontine region: intracellular analysis , 1984, Brain Research.
[19] R. Wurtz,et al. Visual and oculomotor functions of monkey substantia nigra pars reticulata. IV. Relation of substantia nigra to superior colliculus. , 1983, Journal of neurophysiology.
[20] R. Wurtz,et al. Visual and oculomotor functions of monkey substantia nigra pars reticulata. III. Memory-contingent visual and saccade responses. , 1983, Journal of neurophysiology.
[21] S. T. Kitai,et al. Single neostriatal efferent axons in the globus pallidus: a light and electron microscopic study. , 1981, Science.
[22] J. Deniau,et al. The nigro-tectal pathway. An electrophysiological reinvestigation in the rat , 1981, Brain Research.
[23] I. Kanazawa,et al. Electrophysiological evidence for the existence of excitatory fibres in the caudato-nigral pathway in the cat , 1980, Neuroscience Letters.
[24] S. T. Kitai,et al. Medium spiny neuron projection from the rat striatum: An intracellular horseradish peroxidase study , 1980, Brain Research.
[25] P. Somogyi,et al. Projection of neostriatal spiny neurons to the substantia nigra. Application of a combined golgi-staining and horse-radish peroxidase transport procedure at both light and electron microscopic levels , 1979, Brain Research.
[26] G. Krauthamer,et al. Differential synaptic modulation of polysensory neurons of the intralaminar thalamus by medial and lateral caudate nucleus and substantia nigra , 1978, Brain Research.
[27] N. A. Buchwald,et al. Preparation for movement in the cat. II. Unit activity in the basal ganglia and thalamus. , 1978, Electroencephalography and clinical neurophysiology.
[28] G. Racagni,et al. Projections of substance P containing neurons from neostriatum to substantia nigra , 1977, Brain Research.
[29] I. Kanazawa,et al. Evidence for the existence of substance P-containing fibres in striato-nigral and pallido-nigral pathways in rat brain , 1977, Brain Research.
[30] A. Dray,et al. Caudate stimulation and substantia nigra activity in the rat. , 1976, The Journal of physiology.
[31] K. Obata,et al. Caudate-evoked inhibition and actions of GABA and other substances on cat pallidal neurons. , 1973, Brain research.
[32] W. Precht,et al. Monosynaptic inhibition of neurons of the substantia nigra by caudato-nigral fibers. , 1971, Brain research.
[33] S. L. Liles,et al. Electrocortical effects of caudate stimulations which alter cortically induced movement. , 1969, Journal of Neurophysiology.
[34] N. A. Buchwald,et al. The "caudate-spindle". I. Electrophysiological properties. , 1961, Electroencephalography and clinical neurophysiology.
[35] K. Akert,et al. Experimenteller Beitrag zur Physiologie des Nucleus caudatus , 1951 .