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Updated: Aug 24, 2026

In vivo Calcium Imaging in Mouse Inferior Olive
Published on: June 10, 2021
Chaos may enhance information transmission in the inferior olive
Nicolas Schweighofer1, Kenji Doya, Hidekazu Fukai
1Core Research for Evolutional Science and Technology, Japan Science and Technology Corporation, 2-2-2, Hikaridai, Seika-cho, Soraku-gun, Kyoto 619-0288, Japan. nicolas@atr.co.jp
Abstract:
Despite unique well characterized neuronal properties, such as extensive electrical coupling and low firing rates, the role of the inferior olive (IO), which is the source of the climbing fiber inputs to cerebellar Purkinje cells, is still controversial. We propose that the IO stochastically recodes the high-frequency information carried by its synaptic inputs into stochastic, low-rate spikes in its climbing fiber output. Computer simulations of realistic IO networks showed that moderate electrical coupling produced chaotic firing, which maximized the input-output mutual information. This "chaotic resonance" may allow rich error signals to reach individual Purkinje cells, even at low firing rates, allowing efficient cerebellar learning.
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