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Journal Abstract Search


154 related items for PubMed ID: 6165606

  • 1. Spatial distribution of afferent information to the anterior lobe of the cat's cerebellum.
    Rubia FJ, Tandler R.
    Exp Brain Res; 1981; 42(3-4):249-59. PubMed ID: 6165606
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  • 2. Increase in Purkinje cell gain associated with naturally activated climbing fiber input.
    Ebner TJ, Yu QX, Bloedel JR.
    J Neurophysiol; 1983 Jul; 50(1):205-19. PubMed ID: 6308180
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  • 3. Information about peripheral events conveyed to the cerebellum via the climbing fiber system in the decerebrate cat.
    Kolb FP, Rubia FJ.
    Exp Brain Res; 1980 Jul; 38(4):363-73. PubMed ID: 7363971
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  • 5. Changes in the responses of cerebellar nuclear neurons associated with the climbing fiber response of Purkinje cells.
    McDevitt CJ, Ebner TJ, Bloedel JR.
    Brain Res; 1987 Nov 03; 425(1):14-24. PubMed ID: 3427416
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  • 8. Climbing fiber representation of the renal afferent nerve in the vermal cortex of the cat cerebellum.
    Tong G, Robertson LT, Brons J.
    Brain Res; 1993 Jan 22; 601(1-2):65-75. PubMed ID: 8431787
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  • 10. Climbing fibers mediate vestibular modulation of both "complex" and "simple spikes" in Purkinje cells.
    Barmack NH, Yakhnitsa V.
    Cerebellum; 2015 Oct 22; 14(5):597-612. PubMed ID: 26424151
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  • 11. Mossy and climbing fiber inputs from cutaneous mechanoreceptors to cerebellar Purkynĕ cells in unanesthetized cats.
    Leicht R, Rowe MJ, Schmidt RF.
    Exp Brain Res; 1977 Apr 21; 27(5):459-77. PubMed ID: 856617
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  • 12. Cutaneous receptive fields and topography of mossy fibres and climbing fibres projecting to cat cerebellar C3 zone.
    Garwicz M, Jorntell H, Ekerot CF.
    J Physiol; 1998 Oct 01; 512 ( Pt 1)(Pt 1):277-93. PubMed ID: 9729638
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  • 13. The changes in Purkinje cell simple spike activity following spontaneous climbing fiber inputs.
    McDevitt CJ, Ebner TJ, Bloedel JR.
    Brain Res; 1982 Apr 15; 237(2):484-91. PubMed ID: 7083008
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  • 14. Responses of cerebellar Purkinje cells to mechanical perturbations during locomotion of decerebrate cats.
    Matsukawa K, Udo M.
    Neurosci Res; 1985 Jun 15; 2(5):393-8. PubMed ID: 4034104
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  • 16. Electrophysiological study of the corticonuclear projection in the cat cerebellum.
    Yu QX, Ebner TJ, Bloedel JR.
    Brain Res; 1985 Feb 18; 327(1-2):121-34. PubMed ID: 2985173
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  • 17. Branching of olivary axons to innervate pairs of sagittal zones in the cerebellar anterior lobe of the cat.
    Ekerot CF, Larson B.
    Exp Brain Res; 1982 Feb 18; 48(2):185-98. PubMed ID: 7173356
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  • 18. Congruence of mossy fiber and climbing fiber tactile projections in the lateral hemispheres of the rat cerebellum.
    Brown IE, Bower JM.
    J Comp Neurol; 2001 Jan 01; 429(1):59-70. PubMed ID: 11086289
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  • 19. Quantitative analysis of the recurrent collaterals derived from Purkinje cells in zone x of the cat's vermis.
    Bishop GA.
    J Comp Neurol; 1988 Aug 01; 274(1):17-31. PubMed ID: 2458395
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  • 20. Suppression of simple spike discharges of cerebellar Purkinje cells by impulses in climbing fibre afferents.
    Rawson JA, Tilokskulchai K.
    Neurosci Lett; 1981 Sep 01; 25(2):125-30. PubMed ID: 7279306
    [Abstract] [Full Text] [Related]


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