Auditory temporal acuity improves with age in the male mouse auditory thalamus: A role for perineuronal nets?
Autor: | Shmma Quraishe, Tracey A. Newman, LA Anderson |
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Rok vydání: | 2019 |
Předmět: |
Male
0301 basic medicine Aging Auditory Pathways Neuronal firing Thalamus Biology Mice 03 medical and health sciences Cellular and Molecular Neuroscience 0302 clinical medicine Hearing Animals Auditory pathways Neurons Auditory acuity Perineuronal net Geniculate Bodies Medial geniculate body 030104 developmental biology Acoustic Stimulation Time Perception Neural processing Auditory Perception Mice Inbred CBA Temporal acuity Neuroscience 030217 neurology & neurosurgery |
Zdroj: | Journal of Neuroscience Research. 98:1780-1799 |
ISSN: | 1097-4547 0360-4012 |
DOI: | 10.1002/jnr.24537 |
Popis: | The ability to perceive and interpret environmental sound accurately is conserved across many species and is fundamental for understanding communication via vocalisations. Auditory acuity and temporally-controlled neuronal firing underpin this ability. Deterioration in neuronal firing precision likely contributes to poorer hearing performance, yet the role of neural processing by key nuclei in the central auditory pathways is not fully understood. Here, we record from the auditory thalamus (medial geniculate body, (MGB)) of young and middle-aged, normally-hearing male CBA\Ca mice.We report changes in temporal processing of auditory stimuli, with neurons recorded from ventral and medial MGB subdivisions of older animals more likely to synchronise to rapid temporally varying stimuli. MGB subdivisions also showed increased probability of neuronal firing and shorter response latencies to clicks in older animals. Histological investigation of neuronal extracellular specialisations, perineuronal nets (PNNs) and axonal coats, in the MGB identified greater organisation of PNNs around MGB neurons and the presence of axonal coats within older animals. This supports the observation that neural responses recorded from ventral and medial MGB of older mice were more likely to synchronise to temporally-varying stimuli presented at faster repetition rates than those recorded from young adult animals. These changes are observed in animals with normal hearing thresholds, confirming that neural-processing differs between the MGB sub-divisions and such processing is associated with age-related changes to PNNs. Understanding these age-related changes and how they occur has important implications for the design of effective therapeutic interventions to improve speech intelligibility into later life. |
Databáze: | OpenAIRE |
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