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耳蜗外毛细胞的非线性主动力产生

Nonlinear active force generation by cochlear outer hair cell.

作者信息

Spector A A, Brownell W E, Popel A S

机构信息

Department of Biomedical Engineering, Johns Hopkins University, Baltimore, Maryland 21205, USA.

出版信息

J Acoust Soc Am. 1999 Apr;105(4):2414-20. doi: 10.1121/1.426846.

Abstract

We analyze the nonlinear behavior of the longitudinal and circumferential components of the active force generated by the outer hair cell wall in response to changes of its transmembrane potential. We treat the material of the wall as electroelastic, linear orthotropic in terms of strains and as nonlinear in terms of the transmembrane potential. To describe the nonlinear behavior of the active force versus the transmembrane potential, we use two (Boltzmann and simple exponential) types of approximation. We estimate free parameters of these approximations by combining the previously reported passive stiffnesses with the active strains measured in the microchamber experiment. We analyze the sensitivity of the estimated parameters corresponding to changes of the cell axial stiffness, a characteristic independently measured by several groups. We also study the effect of combining the active strains measured in the microchamber experiment with those measured in the whole cell recording experiment. We show agreement between our prediction of the active force and measurements in the whole cochlea and in isolated cells.

摘要

我们分析了外毛细胞细胞壁产生的主动力的纵向和周向分量在其跨膜电位变化时的非线性行为。我们将细胞壁材料视为电弹性材料,在应变方面为线性正交各向异性,在跨膜电位方面为非线性。为了描述主动力相对于跨膜电位的非线性行为,我们使用了两种(玻尔兹曼和简单指数)近似类型。我们通过将先前报道的被动刚度与微腔实验中测量的主动应变相结合来估计这些近似的自由参数。我们分析了与细胞轴向刚度变化相对应的估计参数的敏感性,细胞轴向刚度是由几个研究小组独立测量的一个特征。我们还研究了将微腔实验中测量的主动应变与全细胞记录实验中测量的主动应变相结合的效果。我们展示了我们对主动力的预测与在整个耳蜗和分离细胞中的测量结果之间的一致性。

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