ArticleNeurobiology of aging2026
Age-related ultrastructural differences in the dorsal cortex of the inferior colliculus in the fischer brown Norway rat.
Article in Neurobiology of aging, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 2 papers.
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Who cites it
2 citing papers in PubMed.
- Age-related differences in asymmetric synapses across the central inferior colliculus in the Fischer Brown Norway rat.Aging brain · 2026Article
- Ultrastructural Synaptic Differences in the Central Inferior Colliculus in the 3xTG Mouse Across Three Disease Stages.The Journal of comparative neurology · 2025Article
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13 authors.
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Abstract
The inferior colliculus (IC) is a nucleus in the auditory midbrain that plays an important role in sound and speech processing through how it encodes temporal precision. Temporal precision depends on the balance of inhibition and excitation within the IC. This balance degrades during aging. Age-related changes in synapses have been described in the lemniscal IC as a contributing factor for this imbalance. However, it is unknown if aging affects synapses throughout the non-lemniscal IC in a similar manner. We sought to determine this by examining the dorsal cortex of the IC (ICd). The ICd is a non-lemniscal nucleus that is well known for its extensive innervation by the auditory cortex. Electron microscopy techniques were used across age groups of younger age (2-3 months), middle age (19-21 months) and older age (27-29 months) Fischer Brown Norway rats. Our data demonstrates a small loss of GABAergic synaptic density in middle age, with a significant (34 %) loss during older age. Unlike previous reports of the aging ultrastructure of the IC, asymmetric synaptic density in the ICd remained unchanged. We also demonstrate decreases with age in terminal area and mitochondrial ultrastructure across both synaptic types. Lastly, far fewer asymmetric inputs were observed onto larger GABAergic dendrites. Collectively our data suggest a net loss of inhibition in the ICd. Thus, the balance of excitation and inhibition in the ICd is likely altered and may contribute to factors underlying age-related hearing loss.
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