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Spatial distribution of afferent information to the anterior lobe of the cat's cerebellum

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Summary

In the decerebrate cat discharges of Purkinje cells with simple and complex spikes as well as granule cell discharges in the c1-zone of lobules Va, b and c of the cerebellar anterior lobe were analyzed during a passive movement of the cat's forepaw. Penetrations were made 50 μm apart along the mediolateral and parasagittal directions, the depth never exceeding 500 μm. The response of the Purkinje cells to the climbing fiber input was surprisingly constant, while simple spike responses of the same cells showed a great variability to the same input. The variability between granule cell discharges recorded at a 50 μm distance from each other was similar to that of the simple spikes of the Purkinje cell. It is assumed that because of a patchy distribution of excited granule cells, two neighbouring Purkinje cells may receive a different information via their parallel fiber inputs. This difference is considered to be responsible for the great variability of their responses to mossy fiber inputs.

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References

  • Bell CC, Grimm RJ (1969) Discharge properties of Purkinje cells recorded on single and double micro-electrodes. J Neurophysiol 32: 1044–1055

    Google Scholar 

  • Bell CC, Kawasaki T (1972) Relations among climbing fiber responses of nearby Purkinje cells, J Neurophysiol 35: 155–169

    Google Scholar 

  • Braitenberg V (1961) Functional interpretation of cerebellar histology. Nature 190: 539

    Google Scholar 

  • Braitenberg V, Atwood RP (1958) Morphological observations on the cerebellar cortex. J Comp Neurol 109: 1–34

    Google Scholar 

  • Freeman JA (1969) The cerebellum as a timing device: An experimental study in the frog. In: Linás R (ed) Neurobiology of cerebellar evolution and development. American Medical Association, Chicago, pp 397–420

    Google Scholar 

  • Kolb FP, Rubia FJ (1980) Information about peripheral events conveyed to the cerebellum via the climbing fiber system in the decerebrate cat. Exp Brain Res 38: 363–373

    Google Scholar 

  • Llinás R (1970) Neural operations in cerebellar transections. In: Schmitt FO (ed) The neurosciences. Second study program. Rockefeller University Press, New York, pp 409–426

    Google Scholar 

  • Murphy JT, Sabah NH (1971) Cerebellar Purkinje cell responses to afferent inputs. II. Mossy fiber activation. Brain Res 25: 469–482

    Google Scholar 

  • Rubia FJ, Kolb FP (1978) Responses of cerebellar units to a passive movement in the decerebrate cat. Exp Brain Res 31: 387–401

    Google Scholar 

  • Rushmer DS, Roberts WJ, Augter GK (1976) Climbing fiber responses of cerebellar Purkinje cells to passive movements in the cat forepaw. Brain Res 106: 1–20

    Google Scholar 

  • Rushmer DS, Woollacott MH, Robertson LT, Layer KD (1980) Somatotopic organization of climbing fiber projections from low threshold cutaneous afferents to pars intermedia of cerebellar cortex in the cat. Brain Res 181: 17–30

    Google Scholar 

  • Shambes GM, Beermann DH, Welker W (1978) Multiple tactile areas in cerebellar cortex: another patchy cutaneous projection to granule cell columns in rats. Brain Res 157: 123–128

    Google Scholar 

  • Voogd J (1969) The importance of fiber connections in the comparative anatomy of the mammalian cerebellum. In: Llinás R (ed) Neurobiology of cerebellar evolution and development. American Medical Association, Chicago, pp 493–514

    Google Scholar 

Download references

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Rubia, F.J., Tandler, R. Spatial distribution of afferent information to the anterior lobe of the cat's cerebellum. Exp Brain Res 42, 249–259 (1981). https://doi.org/10.1007/BF00237492

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  • DOI: https://doi.org/10.1007/BF00237492

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