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    Título
    Effects of Multisession Anodal Electrical Stimulation of the Auditory Cortex on Temporary Noise-Induced Hearing Loss in the Rat
    Autor(es)
    Díaz, Iván
    Colmenárez-Raga, Ana Cecilia
    Pérez González, DavidAutoridad USAL ORCID
    Carmona, Venezia G.
    Plaza Lopez, Ignacio
    Merchán Cifuentes, Miguel ÁngelAutoridad USAL ORCID
    Palabras clave
    corti organ
    auditory brainstem responses
    quantitative immunocytochemistry
    choline acetyl transferase
    epidural anodal direct current stimulation
    cochlear inflammatory response
    cochleotopy
    Fecha de publicación
    2021
    Citación
    Díaz I, Colmenarez-Raga AC, Pérez-González D, Carmona VG, Plaza Lopez I and Merchán MA (2021) Effects of Multisession Anodal Electrical Stimulation of the Auditory Cortex on Temporary Noise-Induced Hearing Loss in the Rat. Front. Neurosci. 15:642047
    Resumen
    The protective effect of the efferent system against acoustic trauma (AT) has been shown by several experimental approaches, including damage to one ear, sectioning of the olivocochlear bundle (OCB) in the floor of the IV ventricle, and knock-in mice overexpressing outer hair cell (OHC) cholinergic receptors, among others. Such effects have been related to changes in the regulation of the cholinergic efferent system and in cochlear amplification, which ultimately reverse upon protective hearing suppression. In addition to well-known circuits of the brainstem, the descending corticofugal pathway also regulates efferent neurons of the olivary complex. In this study, we applied our recently developed experimental paradigm of multiple sessions of electrical stimulation (ES) to activate the efferent system in combination with noise overstimulation. ABR thresholds increased 1 and 2 days after AT (8–16 kHz bandpass noise at 107 dB for 90 min) recovering at AT + 14 days. However, after multiple sessions of epidural anodal stimulation, no changes in thresholds were observed following AT. Although an inflammatory response was also observed 1 day after AT in both groups, the counts of reactive macrophages in both experimental conditions suggest decreased inflammation in the epidural stimulation group. Quantitative immunocytochemistry for choline acetyltransferase (ChAT) showed a significant decrease in the size and optical density of the efferent terminals 1 day after AT and a rebound at 14 days, suggesting depletion of the terminals followed by a long-term compensatory response. Such a synthesis recovery was significantly higher upon cortical stimulation. No significant correlation was found between ChAT optical density and size of the buttons in sham controls (SC) and ES/AT + 1day animals; however, significant negative correlations were shown in all other experimental conditions. Therefore, our comparative analysis suggests that cochleotopic cholinergic neurotransmission is also better preserved after multisession epidural stimulation.
    URI
    https://hdl.handle.net/10366/161782
    DOI
    10.3389/fnins.2021.642047
    Versión del editor
    https://www.frontiersin.org/journals/neuroscience/articles/10.3389/fnins.2021.642047/full
    Nivel Educativo
    Aparece en las colecciones
    • GINA. Artículos [23]
    Patrocinador
    University of Salamanca
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    Dateien zu dieser Ressource
    Nombre:
    2021 AC electrical stim FNINS accepted.pdf
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