Abstract

Myelinating oligodendrocytes enable fast propagation of action potentials along the ensheathed axons. In addition, oligodendrocytes play diverse non-canonical roles including axonal metabolic support and activity-dependent myelination. An open question remains whether myelination also contributes to information processing in addition to speeding up conduction velocity. Here, we analyze the role of myelin in auditory information processing using paradigms that are also good predictors of speech understanding in humans. We compare mice with different degrees of dysmyelination using acute multiunit recordings in the auditory cortex, in combination with behavioral readouts. We find complex alterations of neuronal responses that reflect fatigue and temporal acuity deficits. We observe partially discriminable but similar deficits in well myelinated mice in which glial cells cannot fully support axons metabolically. We suggest a model in which myelination contributes to sustained stimulus perception in temporally complex paradigms, with a role of metabolically active oligodendrocytes in cortical information processing.

Highlights

  • GapDuration: 10 40 b 100Normalized inhibition (%) 0 −20Wt (9) Mbpneo/neo (6) Mbpshi/+ (6) −40 05 10 15 20 25 30 35 40 45 50 Gap length 0Gap detection threshold c ** n.s

  • The second Mbp model was newly generated for this study as a hypomorph mouse (Mbpneo/neo) with MBP expression levels below 50% as detailed below

  • To further understand the deficit in auditory processing observed in the Mbp mutants, we used an additional mouse model that is myelinated but exhibits deficits in the oligodendrocytes’ metabolic support of the axon[4]

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Summary

Objectives

We aimed to determine how dysmyelination and/or impairments in axoglial metabolic support affect temporal and spectral auditory processing. The aim of our study was to use different mouse mutants with structural myelin defects and compromised metabolic support of axons to explore the role of myelination at the network level

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