首页> 外文期刊>Journal of the Association for Research in Otolaryngology: JARO >Modeling Responses in the Superior Paraolivary Nucleus: Implications for Forward Masking in the Inferior Colliculus
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Modeling Responses in the Superior Paraolivary Nucleus: Implications for Forward Masking in the Inferior Colliculus

机译:高辅助核核建模反应:下小芯片中向前掩蔽的影响

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摘要

A phenomenological model of the responses of neurons in the superior paraolivary nucleus (SPON) of the rodent is presented in this study. Pure tones at the characteristic frequency (CF) and broadband noise stimuli evoke offset-type responses in these neurons. SPON neurons also phase-lock to the envelope of sinusoidally amplitude-modulated (SAM) stimuli for a range of modulation frequencies. Model SPON neuron received inhibitory input that was relayed by the ipsilateral medial nucleus of the trapezoid body from the contralateral model ventral cochlear nucleus neuron. The SPON model response was simulated by detecting the slope of its inhibitory postsynaptic potential. Responses of the proposed model to pure tones at CF and broadband noise were offset-type independent of the duration of the input stimulus. SPON model responses were also synchronized to the envelope of SAM stimuli with precise timing for a range of modulation frequencies. Modulation transfer functions (MTFs) obtained from the model response to SAM stimuli resemble the physiological MTFs. The output of the proposed SPON model provides an input for models of physiological responses at higher levels of the ascending auditory pathway and can also be utilized to infer possible mechanisms underlying gap detection and duration encoding as well as forward masking at the level of the auditory midbrain.
机译:本研究介绍了啮齿动物的上辅助核细胞核中神经元的响应的现象学模型。在特征频率(CF)和宽带噪声刺激处的纯色调唤起这些神经元中的偏移型反应。 Spon神经元还锁定到正弦幅度调制(SAM)刺激的包络,用于一系列调制频率。模型SPON神经元接受抑制输入,其由梯形体的同侧内侧核从对侧模型腹侧耳蜗细胞核神经元中继。通过检测其抑制突触潜力的斜率来模拟SPON模型响应。所提出的模型对CF和宽带噪声的纯音调的响应是独立于输入刺激的持续时间的偏移型。 Spon模型响应也与SAM刺激的包络同步,具有精确的一系列调制频率。从模型响应到SAM刺激获得的调制传递函数(MTF)类似于生理MTF。所提出的SPON模型的输出提供了在升高升高途径水平下的生理响应模型的输入,并且还可以用于推断出差距检测和持续时间编码的可能机制以及在听觉中脑水平处的前向掩蔽。

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