Department of Plant and Soil Science, University of Vermont, Burlington, Vermont 05401.
Plant Physiol. 1973 Mar;51(3):478-80. doi: 10.1104/pp.51.3.478.
A sample holder was designed and built to facilitate measuring the magnitude and phase angle of the electrical impedance of internodal stem sections from Cornus stolonifera Michx. A nonpolarizing, electrically conducting manganese dioxidecarbon paste used between the stem sample and the electrodes of the sample holder allowed measurement of impedance at frequencies from 50 hertz to 500 kilohertz without electrode polarization or electrical interference. The impedance magnitude was linearly dependent on the sample length, but this dependence was minimized by computing a normalized impedance magnitude. The normalized impedance magnitude (Z(nf)) was calculated using the impedance magnitude (Z) at any specified frequency (f) and the impedance magnitude at 500 kilohertz (Z(500 khz)) in the following formula: Z(nf) = (Z - Z(500 khz))/Z(500 khz). The normalized impedance magnitude was sensitive to injury produced by boiling and peeling the sample. Electrical impedance measurements on the bark and wood separately demonstrated that they have different electrical properties.
设计并制造了一个样品架,以方便测量 Cornus stolonifera Michx 节间茎段的电阻抗幅度和相位角。在茎样品和样品架电极之间使用非极化、导电的二氧化锰-碳糊,允许在 50 赫兹至 500 千赫兹的频率范围内测量阻抗,而不会发生电极极化或电气干扰。阻抗幅度与样品长度呈线性相关,但通过计算归一化阻抗幅度可以最小化这种依赖性。归一化阻抗幅度 (Z(nf)) 可使用以下公式计算:在任何指定频率 (f) 下的阻抗幅度 (Z) 和在 500 千赫兹 (Z(500 khz)) 下的阻抗幅度 (Z):Z(nf) = (Z - Z(500 khz))/Z(500 khz)。归一化阻抗幅度对煮沸和去皮样品造成的损伤很敏感。单独对树皮和木材进行的电阻抗测量表明,它们具有不同的电特性。