School for Mental Health and Neuroscience, Faculty of Health Medicine, and Life Sciences, Maastricht University, Maastricht, the Netherlands; Department of Neurosurgery, Maastricht University Medical Center, Maastricht, the Netherlands.
School for Mental Health and Neuroscience, Faculty of Health Medicine, and Life Sciences, Maastricht University, Maastricht, the Netherlands; Department of Ear, Nose and Throat/Head and Neck Surgery, Maastricht University Medical Center, Maastricht, the Netherlands.
Behav Brain Res. 2023 Jul 26;450:114498. doi: 10.1016/j.bbr.2023.114498. Epub 2023 May 16.
The medial geniculate body (MGB) of the thalamus is an obligatory relay for auditory processing. A breakdown of adaptive filtering and sensory gating at this level may lead to multiple auditory dysfunctions, while high-frequency stimulation (HFS) of the MGB might mitigate aberrant sensory gating. To further investigate the sensory gating functions of the MGB, this study (i) recorded electrophysiological evoked potentials in response to continuous auditory stimulation, and (ii) assessed the effect of MGB HFS on these responses in noise-exposed and control animals. Pure-tone sequences were presented to assess differential sensory gating functions associated with stimulus pitch, grouping (pairing), and temporal regularity. Evoked potentials were recorded from the MGB and acquired before and after HFS (100 Hz). All animals (unexposed and noise-exposed, pre- and post-HFS) showed gating for pitch and grouping. Unexposed animals also showed gating for temporal regularity not found in noise-exposed animals. Moreover, only noise-exposed animals showed restoration comparable to the typical EP amplitude suppression following MGB HFS. The current findings confirm adaptive thalamic sensory gating based on different sound characteristics and provide evidence that temporal regularity affects MGB auditory signaling.
内侧膝状体(MGB)是听觉处理的强制性中继。该水平的自适应滤波和感觉门控的崩溃可能导致多种听觉功能障碍,而 MGB 的高频刺激(HFS)可能减轻异常感觉门控。为了进一步研究 MGB 的感觉门控功能,本研究(i)记录了对连续听觉刺激的电生理诱发反应,以及(ii)评估了 MGB HFS 对噪声暴露和对照动物这些反应的影响。纯音序列用于评估与刺激音高、分组(配对)和时间规则性相关的不同感觉门控功能。从 MGB 记录诱发反应,并在 HFS(100 Hz)之前和之后进行采集。所有动物(未暴露和暴露于噪声、HFS 之前和之后)均显示出音高和分组的门控。未暴露于噪声的动物还显示出时间规则性的门控,而暴露于噪声的动物则没有。此外,只有暴露于噪声的动物显示出类似于 MGB HFS 后典型 EP 幅度抑制的恢复。目前的发现证实了基于不同声音特征的适应性丘脑感觉门控,并提供了证据表明时间规则性会影响 MGB 的听觉信号。