...
首页> 外文期刊>Multiscale modeling & simulation >A Two-Dimensional Nonlinear Nonlocal Feed-Forward Cochlear Model and Time Domain Computation of Multitone Interactions
【24h】

A Two-Dimensional Nonlinear Nonlocal Feed-Forward Cochlear Model and Time Domain Computation of Multitone Interactions

机译:二维非线性非局部前馈耳蜗模型和多音相互作用的时域计算

获取原文
获取原文并翻译 | 示例
           

摘要

A two-dimensional cochlear model is presented, which couples the classical second order partial differential equations of the basilar membrane (BM) with a discrete feed-forward (FF) outer hair cell (OHC) model for enhanced sensitivity. The enhancement (gain) factor in the model depends on BM displacement in a nonlinear nonlocal manner in order to capture multifrequency sound interactions and compression effects in a time-dependent simulation. The FF mechanism is based on the longitudinal tilt of the OHCs in feeding the mechanical energy onto the BM. A numerical method of second order accuracy in space and time is formulated by reducing the unknown variables to the BM with the representation of eigenfunction expansions. Though the nonlinear coupling with OHCs created an implicit algebraic problem at each time step, the structure of the FF mass matrix is found to permit a decomposition into a sum of a time-independent symmetric positive definite part and the remaining time-dependent part. A fast iterative method is devised and shown to converge with only the inversion of the time-independent part of the mass matrix. The time-dependent computation is studied by comparing with steady state solutions (frequency domain solutions) in the linear regime and by a convergence study in the nonlinear regime. Results are shown on OHC amplification of BM responses, compressive output for large intensity input, and nonlinear multitone interactions such as tonal suppression, noise suppression, and distortion products. Qualitative agreement with experimental data is observed.
机译:提出了二维耳蜗模型,该模型将基底膜(BM)的经典二阶偏微分方程与离散前馈(FF)外毛细胞(OHC)模型耦合,以提高灵敏度。模型中的增强(增益)因子以非线性非局部方式依赖于BM位移,以便在时变模拟中捕获多频声音相互作用和压缩效果。 FF机制基于OHC在将机械能馈送到BM时的纵向倾斜。通过用特征函数展开的表示将未知变量减少到BM,从而提出了一种时空二阶精度的数值方法。尽管与OHC的非线性耦合在每个时间步都产生了隐式的代数问题,但发现FF质量矩阵的结构允许分解为与时间无关的对称正定部分与其余与时间有关的部分之和。设计了一种快速迭代方法,该方法证明仅与质量矩阵的时间无关部分的求逆收敛。通过比较线性状态下的稳态解(频域解)和非线性状态下的收敛性研究来研究时间相关的计算。结果显示了OHC放大的BM响应,大强度输入的压缩输出以及非线性多音相互作用,例如音调抑制,噪声抑制和失真产物。观察到与实验数据的定性一致性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号