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Multilinear models of single cell responses in the medial nucleus of the trapezoid body

机译:梯形体内侧核中单细胞反应的多线性模型

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摘要

The representation of acoustic stimuli in the brainstem forms the basis for higher auditory processing. While some characteristics of this representation (e.g. tuning curve) are widely accepted, it remains a challenge to predict the firing rate at high temporal resolution in response to complex stimuli.rnIn this study we explore models for in vivo, single cell responses in the medial nucleus of the trapezoid body (MNTB) under complex sound stimulation. We estimate a family of models, the multilinear models, encompassing the classical spectrotemporal receptive field and allowing arbitrary input-nonlinearities and certain multiplicative interactions between sound energy and its short-term auditory context. We compare these to models of more traditional type, and also evaluate their performance under various stimulus representations.rnUsing the context model, 75% of the explainable variance could be predicted based on a cochlear-like, gamma-tone stimulus representation. The presence of multiplicative contextual interactions strongly reduces certain inhibitory/suppressive regions of the linear kernels, suggesting an underlying nonlinear mechanism, e.g. cochlear or synaptic suppression, as the source of the suppression in MNTB neuronal responses. In conclusion, the context model provides a rich and still interpretable extension over many previous phenomenological models for modeling responses in the auditory brainstem at submillisecond resolution.
机译:脑干中声刺激的表示形成了高级听觉处理的基础。尽管该表示的某些特征(例如,调节曲线)已被广泛接受,但预测对复杂刺激的高时间分辨率下的发射速率仍然是一个挑战。在这项研究中,我们探索了内侧的体内单细胞反应模型复杂声音刺激下的梯形体(MNTB)的原子核。我们估计了一系列模型,即多线性模型,涵盖了经典的光谱时域接受域,并允许任意输入非线性以及声能与其短期听觉环境之间的某些乘法相互作用。我们将它们与更传统类型的模型进行比较,并评估它们在各种刺激表示下的性能。使用上下文模型,可以基于像耳蜗一样的伽马音刺激表示来预测75%的可解释方差。乘法语境相互作用的存在极大地降低了线性核仁的某些抑制/抑制区域,提示了一种潜在的非线性机制,例如:耳蜗或突触抑制,作为MNTB神经元反应抑制的来源。总之,上下文模型提供了许多先前的现象学模型的丰富且仍可解释的扩展,用于以亚毫秒分辨率模拟听觉脑干中的响应。

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  • 来源
    《Network》 |2010年第2期|P.91-124|共34页
  • 作者单位

    Max Planck Institute for Mathematics in the Sciences, Inselstrasse 22, Leipzig, Germany Faculty of Biosciences, Pharmacy and Psychology, University of Leipzig, Talstrasse 33, Leipzig, Germany;

    rnGatsby Computational Neuroscience Unit, University College London, London, UK;

    rnFaculty of Biosciences, Pharmacy and Psychology, University of Leipzig, Talstrasse 33, Leipzig, Germany;

    rnFaculty of Biosciences, Pharmacy and Psychology, University of Leipzig, Talstrasse 33, Leipzig, Germany;

    rnGatsby Computational Neuroscience Unit, University College London, London, UK;

    rnMax Planck Institute for Mathematics in the Sciences, Inselstrasse 22, Leipzig, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    auditory system; sound localization; neuronal encoding;

    机译:听觉系统声音本地化;神经元编码;
  • 入库时间 2022-08-18 01:51:31

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