首页> 美国卫生研究院文献>eNeuro >Long-Lasting Visuo-Vestibular Mismatch in Freely-Behaving Mice Reduces the Vestibulo-Ocular Reflex and Leads to Neural Changes in the Direct Vestibular Pathway
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Long-Lasting Visuo-Vestibular Mismatch in Freely-Behaving Mice Reduces the Vestibulo-Ocular Reflex and Leads to Neural Changes in the Direct Vestibular Pathway

机译:自由行为小鼠中的持久性视觉-前庭不匹配减少了前庭眼反射,并导致直接前庭通路中的神经变化

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摘要

Calibration of the vestibulo-ocular reflex (VOR) depends on the presence of visual feedback. However, the cellular mechanisms associated with VOR modifications at the level of the brainstem remain largely unknown. A new protocol was designed to expose freely behaving mice to a visuo-vestibular mismatch during a 2-week period. This protocol induced a 50% reduction of the VOR. In vivo pharmacological experiments demonstrated that the VOR reduction depends on changes located outside the flocculus/paraflocculus complex. The cellular mechanisms associated with the VOR reduction were then studied in vitro on brainstem slices through a combination of vestibular afferent stimulation and patch-clamp recordings of central vestibular neurons. The evoked synaptic activity demonstrated that the efficacy of the synapses between vestibular afferents and central vestibular neurons was decreased. In addition, a long-term depression protocol failed to further decrease the synapse efficacy, suggesting that the VOR reduction might have occurred through depression-like mechanisms. Analysis of the intrinsic membrane properties of central vestibular neurons revealed that the synaptic changes were supplemented by a decrease in the spontaneous discharge and excitability of a subpopulation of neurons. Our results provide evidence that a long-lasting visuo-vestibular mismatch leads to changes in synaptic transmission and intrinsic properties of central vestibular neurons in the direct VOR pathway. Overall, these results open new avenues for future studies on visual and vestibular interactions conducted in vivo and in vitro.
机译:前庭眼反射(VOR)的校准取决于视觉反馈的存在。但是,与脑干水平的VOR修饰相关的细胞机制仍然未知。设计了一种新的方案,以在两周的时间内使行为自由的小鼠暴露于视觉-前庭不匹配。该协议可将VOR降低50%。体内药理实验表明,VOR的降低取决于絮状物/旁粘液复合物外部的变化。然后,通过前庭传入刺激和中央前庭神经元膜片钳记录的组合,在脑干切片上体外研究了与VOR降低相关的细胞机制。诱发的突触活性表明前庭传入神经和前庭中央神经元之间的突触的功效降低。此外,长期的抑郁方案未能进一步降低突触效力,这表明VOR降低可能是通过类似抑郁的机制发生的。对中枢前庭神经元固有膜性质的分析表明,突触的改变是由神经元亚群的自发放电和兴奋性的降低所补充的。我们的结果提供了证据,表明持久的视觉-前庭不匹配导致直接VOR通路中突触传递和中央前庭神经元固有特性的变化。总体而言,这些结果为体内和体外进行的视觉和前庭相互作用的研究开辟了新的途径。

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