Cerebellar efferents in the lizard Varanus exanthematicus. II. Projections of the cerebellar nuclei
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[1] H. J. Donkelaar,et al. Cerebellar efferents in the lizard Varanus exanthematicus. I. Corticonuclear projections , 1984, The Journal of comparative neurology.
[2] H. T. Donkelaar,et al. Some afferent and efferent connections of the vestibular nuclear complex in the red‐eared turtle Pseudemys scripta elegans , 1983 .
[3] H. J. Donkelaar,et al. Cerebellar corticonuclear projections in the red‐eared turtle Pseudemys scripta elegans , 1983, The Journal of comparative neurology.
[4] H. Künzle,et al. Distribution and structural characterization of neurons giving rise to descending spinal projections in the turtle, Pseudemys scripta elegans , 1982, The Journal of comparative neurology.
[5] R. D. B. Huizen,et al. Cells of origin of descending pathways to the spinal cord in the clawed toad (Xenopus laevis) , 1981, Neuroscience.
[6] J. Wold. The vestibular nuclei in the domestic hen (Gallus domesticus): VI. Afferents from the cerebellum , 1981, The Journal of comparative neurology.
[7] H. J. Donkelaar,et al. Ascending projections of the brain stem reticular formation in a nonmammalian vertebrate (the lizard Varanus exanthematicus), with notes on the afferent connections of the forebrain , 1981, The Journal of comparative neurology.
[8] N. Mizuno,et al. An autoradiographic study on the terminal distribution of cerebellothalamic fibers in the cat , 1981, Brain Research.
[9] P. A. Young,et al. Cerebellothalamic projections in the rat: An autoradiographic and degeneration study , 1981, The Journal of comparative neurology.
[10] H. T. ten Donkelaar,et al. Cells of origin of pathways descending to the spinal cord in some quadrupedal reptiles , 1980, The Journal of comparative neurology.
[11] G. B. Stanton. Topographical organization of ascending cerebellar projections from the dentate and interposed nuclei in Macaca mulatta: An anterograde degeneration study , 1980, The Journal of comparative neurology.
[12] C. Kitt,et al. The paleostriatal system of Caiman crocodilus , 1980, The Journal of comparative neurology.
[13] L. Watkins,et al. HRP pellets and slow-release gels: two new techniques for greater localization and sensitivity , 1979, Brain Research.
[14] A. Lohman,et al. Ascending connections to the forebrain in the tegu lizard , 1978, The Journal of comparative neurology.
[15] R L Faull,et al. The cerebellofugal projections in the brachium conjunctivum of the rat. I. The contralateral ascending pathway , , 1978, The Journal of comparative neurology.
[16] R. Faull. The cerebellofugal projections in the brachium conjunctivum of the rat. II. The ipsilateral and contralateral descending pathways , 1978, The Journal of comparative neurology.
[17] Y. Hosoya,et al. The location of spinal projection neurons in the cerebellar nuclei (cerebellospinal tract neurons) of the cat. A study with the horseradish peroxidase technique , 1978, Brain Research.
[18] M. Mesulam,et al. Tetramethyl benzidine for horseradish peroxidase neurohistochemistry: a non-carcinogenic blue reaction product with superior sensitivity for visualizing neural afferents and efferents. , 1978, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[19] B. A. Flumerfelt,et al. The organization of the cerebellorubral projection: An experimental study in the rat , 1977 .
[20] M B Carpenter,et al. Fastigial efferent projections in the monkey: An autoradiographic study , 1977, The Journal of comparative neurology.
[21] B. W. Peterson,et al. Direct fastigiospinal fibers in the cat , 1977, Brain Research.
[22] V. Chan‐Palay. Cerebellar Dentate Nucleus: Organization, Cytology and Transmitters , 1977 .
[23] H. Donkelaar,et al. Desending pathways from the brain stem to the spinal cord in some reptiles. I. Origin , 1976, The Journal of comparative neurology.
[24] H. Donkelaar,et al. Descending pathways from the brain stem to the spinal cord in some reptiles. II. Course and site of termination , 1976, The Journal of comparative neurology.
[25] H. Kuypers. The Anatomical Organization of the Descending Pathways and their Contributions to Motor Control Especially in Primates , 1973 .
[26] D Bowsher,et al. Ascending projections of the medial cerebellar (fastigial) nucleus: an experimental study in the cat. , 1970, Brain research.
[27] D. G. Lawrence,et al. The functional organization of the motor system in the monkey. I. The effects of bilateral pyramidal lesions. , 1968, Brain : a journal of neurology.
[28] D. G. Lawrence,et al. The functional organization of the motor system in the monkey. II. The effects of lesions of the descending brain-stem pathways. , 1968, Brain : a journal of neurology.
[29] L. Heimer,et al. Two methods for selective silver impregnation of degenerating axons and their synaptic endings in the central nervous system. , 1967, Brain research.
[30] H. Karten,et al. The afferent connections of the nucleus rotundus in the pigeon. , 1966, Brain research.
[31] D. C. Goodman. THE EVOLUTION OF CEREBELLAR STRUCTURE AND FUNCTION. , 1964, American zoologist.
[32] O. Pompeiano,et al. Fastigioreticular fibers in the cat. An experimental study with silver methods , 1962, The Journal of comparative neurology.
[33] O. Pompeiano,et al. The fastigiovestibular projection in the cat. An experimental study with silver impregnation methods , 1962, The Journal of comparative neurology.
[34] D. C. Goodman,et al. Cerebellar stimulation in the unrestrained and unanesthetized alligator , 1960, The Journal of comparative neurology.
[35] W. Chambers,et al. Experimental study of the efferent projections from the cerebellar nuclei to the brainstem of the cat , 1958, The Journal of comparative neurology.
[36] W. Chambers,et al. Experimental studies of the vermal cerebellar projections in the brain stem of the cat (fastigiobulbar tract). , 1956, Journal of anatomy.
[37] W. Chambers,et al. Functional localization in the cerebellum. II. Somatotopic organization in cortex and nuclei. , 1955, A.M.A. archives of neurology and psychiatry.
[38] W. Chambers,et al. Functional localization in the cerebellum. I. Organization in longitudinal cortico‐nuclear zones and their contribution to the control of posture, both extrapyramidal and pyramidal , 1955, The Journal of comparative neurology.
[39] W. Nauta,et al. Silver impregnation of degenerating axons in the central nervous system: a modified technic. , 1954, Stain technology.
[40] O. Larsell. The cerebellum of reptiles: Chelonians and alligator , 1932 .
[41] O. Larsell. The cerebellum of reptiles: Lizards and snake , 1926 .
[42] O. Larsell. The cerebellum of the frog , 1923 .
[43] J. Shimazono. Das Kleinhirn der Vögel , 1912 .
[44] J. G. Wolters,et al. Funicular trajectories of descending brain stem pathways in a lizard (Varanus exanthematicus). , 1982, Progress in brain research.
[45] H. Donkelaar. Organization of descending pathways to the spinal cord in amphibians and reptiles. , 1982 .
[46] S. Ebbesson. Morphology of the Spinal Cord , 1976 .
[47] W. Cruce. Termination of supraspinal descending pathways in the spinal cord of the tegu lizard, Tupinambis nigropunctatus. , 1975, Brain, behavior and evolution.
[48] G. Martin. The projections of the deep cerebellar nuclei of the opossum, Didelphis marsupialis virginiana. , 1974 .
[49] K. Achenbach,et al. Cerebellar Projections to Pons, Medulla and Spinal Cord in the Albino Rat , 1968 .
[50] H. Kuypers,et al. THE DESCENDING PATHWAYS TO THE SPINAL CORD, THEIR ANATOMY AND FUNCTION. , 1964, Progress in brain research.
[51] J. K. Weston. The reptilian vestibular and cerebellar gray with fiber connections , 1936 .
[52] J. S. Russell. Degenerations Consequent on Experimental Lesions of the Cerebellum. [Abstract] , 1894 .