Spector A A
Department of Biomedical Engineering and Center for Computational Medicine and Biology, Johns Hopkins University, Baltimore, MD 21205, USA.
ORL J Otorhinolaryngol Relat Spec. 1999 Sep-Oct;61(5):287-93. doi: 10.1159/000027686.
A nonlinear electroelastic model for the composite wall of the cochlear outer hair cell is proposed. The cell wall is modeled as a two-layer shell with elastic connections between the layers: an active layer corresponds to the plasma membrane and a passive layer corresponds to a combination of the cytoskeleton and the subsurface cisternae. As a basis of the constitutive relations, a thermodynamic potential for such a composite wall is developed. Expressions for the components of the active force are obtained in terms of the active strains and the elastic properties of the passive and active layers. An application to the electrical stimulation of the cell under the conditions of the microchamber experiment is given. As a result, active strains, active forces, and mechanical energy stored in each of the two layers are presented as functions of the wall (membrane) potential.
提出了一种用于耳蜗外毛细胞复合壁的非线性电弹性模型。细胞壁被建模为两层壳,层间有弹性连接:活性层对应于质膜,被动层对应于细胞骨架和表面下池的组合。作为本构关系的基础,开发了这种复合壁的热力学势。根据活性应变以及被动层和活性层的弹性特性,得到了活性力分量的表达式。给出了在微腔实验条件下对细胞进行电刺激的应用。结果,给出了两层中每层的活性应变、活性力和存储的机械能作为壁(膜)电位的函数。