4.5 Article

Beta-gamma burst stimulations of the inferior olive induce high-frequency oscillations in the deep cerebellar nuclei

期刊

EUROPEAN JOURNAL OF NEUROSCIENCE
卷 48, 期 8, 页码 2879-2889

出版社

WILEY
DOI: 10.1111/ejn.13873

关键词

350 Hz; awake mouse; cerebellum; deep cerebellar nucleus; high-frequency oscillations; inferior olive electrical stimulation

资金

  1. Fonds Erasme (ULB)
  2. National Fund for Scientific Research (FNRS)
  3. Belgian Federal Science Policy Office
  4. European Space Agency [AO-2004, 118]
  5. Belgian National Fund for Scientific Research (FNRS)
  6. Universite Libre de Bruxelles
  7. Universite de Mons (Belgium)

向作者/读者索取更多资源

The cerebellum displays various sorts of rhythmic activities covering both low-and high-frequency oscillations. These cerebellar high-frequency oscillations were observed in the cerebellar cortex. Here, we hypothesised that not only is the cerebellar cortex a generator of high-frequency oscillations but also that the deep cerebellar nuclei may also play a similar role. Thus, we analysed local field potentials and single-unit activities in the deep cerebellar nuclei before, during and after electric stimulation in the inferior olive of awake mice. A high-frequency oscillation of 350 Hz triggered by the stimulation of the inferior olive, within the beta-gamma range, was observed in the deep cerebellar nuclei. The amplitude and frequency of the oscillation were independent of the frequency of stimulation. This oscillation emerged during the period of stimulation and persisted after the end of the stimulation. The oscillation coincided with the inhibition of deep cerebellar neurons. As the inhibition of the deep cerebellar nuclei is related to inhibitory inputs from Purkinje cells, we speculate that the oscillation represents the unmasking of the synchronous activation of another subtype of deep cerebellar neuronal subtype, devoid of GABA receptors and under the direct control of the climbing fibres from the inferior olive. Still, the mechanism sustaining this oscillation remains to be deciphered. Our study sheds new light on the role of the olivo-cerebellar loop as the final output control of the intercerebellar circuitry.

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