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青蛙晶状体在100赫兹至500兆赫兹范围内的介电行为。使用分配的椭球壳模型进行模拟。

Dielectric behavior of the frog lens in the 100 Hz to 500 MHz range. Simulation with an allocated ellipsoidal-shells model.

作者信息

Watanabe M, Suzaki T, Irimajiri A

机构信息

Department of Physiology, Kochi Medical School, Japan.

出版信息

Biophys J. 1991 Jan;59(1):139-49. doi: 10.1016/S0006-3495(91)82206-8.

Abstract

In an attempt to correlate the passive electrical properties of the lens tissue with its structure, we measured ac admittances for isolated frog lenses, lens nuclei, and homogenate of cortical fiber cells, over the frequency range 10(2)-5.10(8) Hz. The whole lenses molded into discoid shape show a characteristic "two-step" dielectric dispersion with a huge permittivity increment of the order of 10(5) at 1 kHz. Of the two subdispersions disclosed, dispersion 1 has a permittivity increment (delta epsilon) of 2.10(5) with a characteristic frequency (fc) of 2 kHz, and dispersion 2 has a delta epsilon of 400 with an fc of 2 MHz. In terms of loss tangent, these dispersions are more clearly located as two separate peaks. Data are analyzed using an allocated ellipsoidal-shells model which has been developed by taking into account fiber orientation inside the lens tissue. Dispersion 1 is assigned to the equatorial cortex, where fiber cells run parallel to the applied electric field, and dispersion 2 to the nucleus with a complex fiber arrangement and also to the polar cortex, in which the fiber alignment is predominantly perpendicular. In addition, the model analysis reveals that, in the frog lens, the nucleus occupies approximately 30% in volume and that relative permittivity and conductivity for the cell interior are, respectively, 45 and 3 mS/cm for the cortical cells, and 28 and 0.3 mS/cm for the nuclear cells.

摘要

为了将晶状体组织的被动电学性质与其结构联系起来,我们测量了分离的青蛙晶状体、晶状体核以及皮质纤维细胞匀浆在10² - 5×10⁸ Hz频率范围内的交流导纳。制成盘状的完整晶状体呈现出特征性的“两步”介电色散,在1 kHz时介电常数增量高达10⁵数量级。在揭示的两个子色散中,色散1的介电常数增量(δε)为2×10⁵,特征频率(fc)为2 kHz,色散2的δε为400,fc为2 MHz。就损耗角正切而言,这些色散更清晰地表现为两个单独的峰值。使用一种已开发的分配椭球壳模型对数据进行分析,该模型考虑了晶状体组织内部的纤维取向。色散1归因于赤道皮质,此处纤维细胞与施加的电场平行排列,色散2归因于具有复杂纤维排列的核以及极皮质,其中纤维排列主要是垂直的。此外,模型分析表明,在青蛙晶状体中,核占据约30%的体积,皮质细胞的细胞内部相对介电常数和电导率分别为45和3 mS/cm,核细胞的分别为28和0.3 mS/cm。

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