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A Computational Modeling Study of the Effects of Acoustic Trauma on the Dorsal Cochlear Nucleus

机译:声学创伤对背耳耳蜗核效应的计算模拟研究

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The dorsal cochlear nucleus (DCN) is the most complex part of the cochlear nucleus and has been shown to be involved in sound localization and in some auditory perceptual phenomenon, e.g., tinnitus. The responses of DCN neurons have been modeled in several studies, e.g., Zheng and Voigt 2006 [1], They simulated both DCN principal cell response maps (RMs) and notch-noise responses. In this study, the same DCN model is used to study the effects of acoustic trauma on DCN neurons using the auditory periphery model of Zilany and Bruce 2006 [2]. This model is capable of modeling the effects of hearing loss. The RM properties of DCN model principal cells are compared to recordings of Ma and Young 2006 [3] from unanesthetized, decerebrated cats following exposure to trauma-producing acoustic noise. By manipulating the DCN model parameters, similar tone responses following acoustic trauma can be simulated. DCN model neurons show RMs with either no response or only tail responses, depending on the degree of acoustic trauma. This study may help to determine the source of different tail responses, which has not been studied in previous physiological experiments. It also suggests that similar responses following acoustic trauma will be found in the DCN of other animals, e.g., gerbil.
机译:背部耳蜗细胞核(DCN)是耳蜗核的最复杂部分,并且已被证明参与声音定位,并且在一些听觉感知现象中,例如耳鸣。 DCN神经元的反应在几项研究中被建模,例如Zheng和Voigt 2006 [1],它们模拟了DCN主体细胞响应图(RMS)和Notch噪声响应。在该研究中,相同的DCN模型用于使用Zilany和Bruce 2006的听觉周边模型研究声学创伤对DCN神经元的影响[2]。该模型能够建模听力损失的影响。将DCN模型主要细胞的RM性能与2006 [3]的记录与未经发育,在暴露于创伤产生的声学噪声后的无明确的去衰弱猫。通过操纵DCN模型参数,可以模拟声学创伤后的类似色调响应。 DCN模型神经元显示RMS,无论是无响应还是仅尾部响应,具体取决于声学创伤程度。本研究可能有助于确定不同尾响应的来源,该来源在以前的生理实验中尚未研究。它还表明,声学创伤后的类似反应将在其他动物的DCN中找到,例如,Gerbil。

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