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Transcutaneous induction of stimulus-timing-dependent plasticity in dorsal cochlear nucleus

机译:经皮刺激诱导听觉后蜗依赖的可塑性

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The cochlear nucleus (CN) is the first site of multisensory integration in the ascending auditory pathway. The principal output neurons of the dorsal cochlear nucleus (DCN), fusiform cells, receive somatosensory information relayed by the CN granule cells from the trigeminal and dorsal column pathways. Integration of somatosensory and auditory inputs results in long-term enhancement or suppression in a stimulus-timing-dependent manner. Here, we demonstrate that stimulus-timing-dependent plasticity (STDP) can be induced in DCN fusiform cells using paired auditory and transcutaneous electrical stimulation of the face and neck to activate trigeminal and dorsal column pathways to the CN, respectively. Long-lasting changes in fusiform cell firing rates persisted for up to 2 h after this bimodal stimulation, and followed Hebbian or anti-Hebbian rules, depending on tone duration, but not somatosensory stimulation location: 50 ms paired tones evoked predominantly Hebbian, while 10 ms paired tones evoked predominantly anti-Hebbian plasticity. The tone-duration-dependent STDP was strongly correlated with first inter-spike intervals, implicating intrinsic cellular properties as determinants of STDP. This study demonstrates that transcutaneous stimulation with precise auditory–somatosensory timing parameters can non-invasively induce fusiform cell long-term modulation, which could be harnessed in the future to moderate tinnitus-related hyperactivity in DCN.
机译:耳蜗核(CN)是上升听觉途径中的多感官整合的第一个站点。背侧耳蜗核(DCN)的主要输出神经元,梭形细胞,从三叉和背柱途径接收由CN颗粒细胞传递的体感信息。体感和听觉输入的整合会导致长期的增强或抑制,其方式与刺激时机有关。在这里,我们证明可以通过使用成对的听觉和经皮电刺激的面部和颈部分别激活三叉神经和背柱到CN的通路,在DCN梭形细胞中诱导依赖于刺激时间的可塑性(STDP)。在双峰刺激后,梭形细胞放电率的持久变化持续长达2小时,并遵循Hebbian或anti-Hebbian规则,具体取决于音调持续时间,但不取决于体感刺激的位置:50 ms的配对音调主要诱发Hebbian,而10 ms ms配对音调主要表现出抗希伯来可塑性。依赖音调持续时间的STDP与第一个突突间间隔密切相关,暗示了固有细胞特性是STDP的决定因素。这项研究表明,具有精确的听觉-躯体感觉时序参数的经皮刺激可以无创地诱导梭形细胞长期调节,将来可用于减轻DCN中耳鸣相关的过度活跃。

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