Zhang Yixuan, Kipping Daniel, Nogueira Waldo
IEEE Trans Biomed Eng. 2025 Jun 4;PP. doi: 10.1109/TBME.2025.3573398.
Neural health refers to the condition and functionality of the auditory nerve fibers (ANFs), essential for transmitting sound signals from the cochlea to the brain. However, neural health cannot be directly measured due to current technological limitations. We utilize a computational model to evaluate different indirect methods for estimating neural health.
Two distinct measures for estimating neural health, (i) threshold levels for focused partial tripolar stimulation and (ii) changes in the electrically evoked compound action potential (eCAP) amplitude growth function for different inter-phase gaps (IPGs), were evaluated in a computational model of an electrically stimulated implanted cochlea. The model combined a 3D finite element method model, a realistic ANF geometry, and a neuron model, including an existing phenomenological single-ANF model and an eCAP model. Our experiments simulated different neural health conditions (healthy, shrunk, and degenerated) to model nueral dead region in the cochlea.
Experiment results demonstrated that the threshold levels with partial tripolar stimulation were more sensitive to neural health deficits than monopolar stimulation. The threshold difference between partial tripolar and monopolar stimulation seems to be a promising measure of neural health status. However, results from the eCAP IPG slope and offset effects were not consistently associated with neural health conditions.
Our results suggest that the difference in threshold levels with partial tripolar and monopolar stimulation is a possible method for estimating neural health.
This study enhances the understanding of neural health through a computational model, contributing to new approaches for neural health estimation.
神经健康指的是听神经纤维(ANF)的状况和功能,它对于将声音信号从耳蜗传递至大脑至关重要。然而,由于当前技术限制,神经健康无法直接测量。我们利用一个计算模型来评估不同的间接方法以估计神经健康。
在一个电刺激植入式耳蜗的计算模型中,评估了两种不同的估计神经健康的指标,(i)聚焦部分三极刺激的阈值水平,以及(ii)不同相间间隙(IPG)下电诱发复合动作电位(eCAP)幅度增长函数的变化。该模型结合了三维有限元方法模型、逼真的听神经纤维几何结构和一个神经元模型,包括一个现有的唯象单听神经纤维模型和一个eCAP模型。我们的实验模拟了不同的神经健康状况(健康、萎缩和退化)以模拟耳蜗中的神经死亡区域。
实验结果表明,部分三极刺激的阈值水平比单极刺激对神经健康缺陷更敏感。部分三极刺激和单极刺激之间的阈值差异似乎是神经健康状况的一个有前景的指标。然而,eCAP相间间隙斜率和偏移效应的结果与神经健康状况并非始终相关。
我们的结果表明,部分三极刺激和单极刺激的阈值水平差异是一种估计神经健康的可能方法。
本研究通过计算模型增进了对神经健康的理解,为神经健康估计的新方法做出了贡献。