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A Modeling Study of Notch Noise Responses of Type III Units in the Gerbil Dorsal Cochlear Nucleus

机译:沙鼠背侧耳蜗核中III型单元的Notch噪声响应的模型研究

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摘要

A computational model of the neural circuitry of the gerbil dorsal cochlear nucleus (DCN), based on the MacGregor’s neuromime model, was used to simulate type III unit (P-cell) responses to notch noise stimuli. The DCN patch model is based on a previous computational model of the cat DCN [Hancock, K. E., and H. F. Voigt. Ann. Biomed. Eng. 27:73–87, 1999]. According to the experimental study of Parsons et al. [Ann. Biomed. Eng. 29:887–896, 2001], the responses of gerbil DCN type III units to notch noise stimuli are similar to those of cat DCN type IV units, which are thought to be spectral notch detectors. This suggests that type III units in the gerbil DCN may serve as spectral notch detectors. In this modeling study, a simplified notch noise response plot—spike discharge rate vs. notch cutoff frequency plot—was used to compare model responses to the experimental results. Parameter estimation and sensitivity analysis of three connection parameters within the DCN patch have been studied and shows the model is robust, providing reasonable fits to the experimental data from 14 of 15 type III units examined [work supported by a grant from NIDCD, Boston University’s Biomedical Engineering department and Hearing Research Center].
机译:基于MacGregor的神经模仿模型的沙鼠背耳蜗神经(DCN)的神经回路的计算模型,用于模拟III型单元(P细胞)对陷波噪声刺激的反应。 DCN补丁模型基于猫DCN的先前计算模型[Hancock,K. E.和H. F. Voigt。安生物医学。 。 27:73-87,1999]。根据帕森斯等人的实验研究。 [安生物医学。 。 29:887–896,2001],沙鼠DCN III型单元对陷波噪声刺激的响应与猫DCN IV型单元相似,它们被认为是频谱陷波检测器。这表明,沙鼠DCN中的III类单元可以用作频谱陷波检测器。在此建模研究中,使用了简化的陷波噪声响应图(峰值放电速率与陷波截止频率图)来将模型响应与实验结果进行比较。已经研究了DCN贴片中三个连接参数的参数估计和灵敏度分析,结果表明该模型很健壮,可以合理地拟合15个III类单元中14个单元的实验数据[由NIDCD资助,波士顿大学生物医学研究所资助。工程部和听力研究中心]。

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