Shackleton T M, McAlpine D, Palmer A R
MRC Institute of Hearing Research, University of Nottingham, University Park, Nottingham, UK.
Hear Res. 2000 Nov;149(1-2):199-215. doi: 10.1016/s0378-5955(00)00187-8.
Convergent input from cells in the medial superior olive (MSO) and lateral superior olive (LSO) onto a single inferior colliculus (IC) cell explains many findings that are not compatible with a simple coincidence detector mechanism. Here this explanation is tested using a physiologically accurate computer model of the binaural pathway in which the input to the IC cell is either from two MSO cells or a MSO and a LSO cell. Auditory nerve (AN) spike trains are formed by a stochastic hair cell model following a basilar membrane simulation using a gammatone filter. In subsequent cells input spikes cause post-synaptic potentials (PSPs) which are summed causing the cell to fire when the sum crosses a threshold. The individual cells are matched to the physiology by varying the number of inputs, the magnitude and duration of the PSPs and the firing threshold. Non-linear best-phase-versus-frequency functions arise if the two IC inputs have different best frequencies and different characteristic delays. One input can be selectively suppressed by turning on an additional tone at the worst phase of that input. Non-zero characteristic phases arise if the characteristic frequencies of the AN fibres feeding into a single superior olive cell are mismatched.
来自内侧上橄榄核(MSO)和外侧上橄榄核(LSO)细胞的汇聚输入到单个下丘(IC)细胞上,这解释了许多与简单的符合探测器机制不相符的发现。在此,使用双耳通路的生理精确计算机模型对这一解释进行测试,在该模型中,IC细胞的输入要么来自两个MSO细胞,要么来自一个MSO细胞和一个LSO细胞。听觉神经(AN)的尖峰序列由一个随机毛细胞模型形成,该模型在使用伽马通滤波器进行基底膜模拟之后产生。在后续细胞中,输入的尖峰引发突触后电位(PSP),这些电位进行总和,当总和超过阈值时导致细胞放电。通过改变输入数量、PSP的幅度和持续时间以及放电阈值,使单个细胞与生理学相匹配。如果两个IC输入具有不同的最佳频率和不同的特征延迟,就会出现非线性的最佳相位与频率函数。通过在该输入的最差相位开启一个额外的音调,可以选择性地抑制一个输入。如果馈入单个上橄榄核细胞的AN纤维的特征频率不匹配,就会出现非零特征相位。