Department of Physiology, McGill University, Montreal, Canada.
The Department of Otolaryngology- Head and Neck Surgery, Johns Hopkins University School of Medicine, Baltimore, United States.
Elife. 2020 Sep 11;9:e57484. doi: 10.7554/eLife.57484.
We have previously reported that central neurons mediating vestibulo-spinal reflexes and self-motion perception optimally encode natural self-motion (Mitchell et al., 2018). Importantly however, the vestibular nuclei also comprise other neuronal classes that mediate essential functions such as the vestibulo-ocular reflex (VOR) and its adaptation. Here we show that heterogeneities in resting discharge variability mediate a trade-off between faithful encoding and optimal coding via temporal whitening. Specifically, neurons displaying lower variability did not whiten naturalistic self-motion but instead faithfully represented the stimulus' detailed time course, while neurons displaying higher variability displayed temporal whitening. Using a well-established model of VOR pathways, we demonstrate that faithful stimulus encoding is necessary to generate the compensatory eye movements found experimentally during naturalistic self-motion. Our findings suggest a novel functional role for variability toward establishing different coding strategies: (1) faithful stimulus encoding for generating the VOR; (2) optimized coding via temporal whitening for other vestibular functions.
我们之前曾报道过,介导前庭脊髓反射和自我运动感知的中枢神经元能最优地编码自然运动(Mitchell 等人,2018 年)。然而,重要的是,前庭核还包含其他神经元类别,它们介导着诸如前庭眼反射(VOR)及其适应等基本功能。在这里,我们表明静息放电变异性的异质性通过时间白化介导了保真编码和最优编码之间的权衡。具体来说,显示较低变异性的神经元没有白化自然运动,但忠实地表示了刺激的详细时间过程,而显示较高变异性的神经元则显示出时间白化。使用 VOR 通路的成熟模型,我们证明了忠实的刺激编码对于产生在自然运动过程中实验中发现的补偿性眼球运动是必要的。我们的研究结果表明,变异性在建立不同编码策略方面具有新的功能作用:(1)产生 VOR 的忠实刺激编码;(2)通过时间白化进行优化编码,用于其他前庭功能。