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Titlebook: Cerebellum as a CNS Hub; Hidehiro Mizusawa,Shinji Kakei Conference proceedings 2021 Springer Nature Switzerland AG 2021 cerebellum.evoluti

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楼主: 母牛胆小鬼
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The Quest for a Unifying Framework for the Role of Cerebellar Complex Spikes role of the cerebellum. Unlike the mossy fiber-driven simple spikes fired by Purkinje cells at high frequencies, complex spikes, which reflect the impact of olivary climbing fibers, are characterized by perplexingly low firing rates and an intricate action potential morphology. What possibly could
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Timing in Purkinje Cells and a Novel Learning Mechanism This conditional pause response (CR) in the Purkinje cell is adaptively timed and drives the overt response. Recent results show that the Purkinje cell CR does not depend on modification of synaptic strength such as long-term depression but on a novel mechanism that enables the cell to learn the te
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2627-535X mation processing, complex spikes, plasticity, modeling, and spinocerebellar ataxias. The volume is intended to set the stage for the future of cerebellar research and guide both basic and clinical researchers.978-3-030-75819-6978-3-030-75817-2Series ISSN 2627-535X Series E-ISSN 2627-5341
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https://doi.org/10.1007/978-3-658-39425-7mination from around P14 to P17. Subsequent studies identified molecules that transmit elimination signal retrogradely from Purkinje cells to climbing fibers at the downstream of mGluR1. In this chapter, we make an overview of how mGluR1 and its downstream molecules regulate climbing fiber synapse elimination.
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Organization and Management of ITlogous to each other in the ansiform area. The anatomical basis for the three major locations of the cognitive function in the human cerebellum (crus I + II, vermal lobule VII, and lobule HIX) has been proposed in the rodent cerebellum by supposing the interspecies homology.
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Organization and Management of ITles of PNNs, which enwrap synapses between Purkinje cells and large DCN neurons, in dynamic regulation of GABAergic transmission, and in modification of cerebellar motor learning, particularly especially delay eyeblink conditioning, proposing that PNNs in the DCN restrict synaptic plasticity associated with motor learning in adult animals.
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Organization and Management of ITpOKR and those that don’t is the presence of the velocity storage mechanism (VSM). Finally, the importance of the closed VSM-cerebellar neural loops is discussed in the context of counting passage of time to start and stop the eyes predictively in the adaptive OKR control.
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