Department of Medical Physics and Acoustics and Cluster of Excellence "Hearing4all", University of Oldenburg, 26129, Oldenburg, Germany.
J Assoc Res Otolaryngol. 2022 Aug;23(4):535-550. doi: 10.1007/s10162-021-00823-1. Epub 2022 Mar 25.
Interaural time difference (ITD) sensitivity with cochlear implant stimulation is remarkably similar to envelope ITD sensitivity using conventional acoustic stimulation. This holds true for human perception, as well as for neural response rates recorded in the inferior colliculus of several mammalian species. We hypothesize that robust excitatory-inhibitory (EI) interaction is the dominant mechanism. Therefore, we connected the same single EI-model neuron to either a model of the normal acoustic auditory periphery or to a model of the electrically stimulated auditory nerve. The model captured most features of the experimentally obtained response properties with electric stimulation, such as the shape of rate-ITD functions, the dependence on stimulation level, and the pulse rate or modulation-frequency dependence. Rate-ITD functions with high-rate, amplitude-modulated electric stimuli were very similar to their acoustic counterparts. Responses obtained with unmodulated electric pulse trains most resembled acoustic filtered clicks. The fairly rapid decline of ITD sensitivity at rates above 300 pulses or cycles per second is correctly simulated by the 3.1-ms time constant of the inhibitory post-synaptic conductance. As the model accounts for these basic properties, it is expected to help in understanding and quantifying the binaural hearing abilities with electric stimulation when integrated in bigger simulation frameworks.
双侧声时差(ITD)敏感性与人工耳蜗刺激非常相似,与传统声学刺激的包络 ITD 敏感性相似。这不仅适用于人类感知,也适用于在几种哺乳动物的下丘中记录的神经反应率。我们假设强大的兴奋-抑制(EI)相互作用是主要机制。因此,我们将相同的单个 EI 模型神经元连接到正常声学听觉外围模型或电刺激听神经模型。该模型捕获了电刺激下实验获得的反应特性的大多数特征,例如速率-ITD 函数的形状、刺激水平的依赖性以及脉冲率或调制频率的依赖性。具有高速率、幅度调制的电刺激的速率-ITD 函数与它们的声学对应物非常相似。未调制的电脉冲序列获得的响应最类似于声学滤波的点击。抑制性突触后电导的 3.1 毫秒时间常数正确模拟了高于 300 个脉冲或每秒 300 个周期的 ITD 敏感性的快速下降。由于该模型解释了这些基本特性,因此当集成到更大的模拟框架中时,预计它将有助于理解和量化电刺激的双耳听力能力。