Neumcke B
Biophys Struct Mech. 1975 Dec 19;1(4):295-309. doi: 10.1007/BF00537643.
A mathematical treatment is given for 1/f noise observed in the ion transport through membranes. It is shown that this noise can be generated by current or voltage fluctuations which occur after step changes of the membrane permeability. Due to diffusion polarization in the unstirred solution layers near the membrane these fluctuations exhibit a 1 square root of t time course which produces noise with a 1/f frequency dependence. The spectral density of 1/f noise is calculated for porous membranes with random switches between a finite and zero pore permeability. A wide frequency range and a magnitude of 1/f noise are obtained which are compatible with experimental data of 1/f noise reported for nerve membranes.
对通过膜的离子传输中观察到的1/f噪声进行了数学处理。结果表明,这种噪声可由膜通透性阶跃变化后出现的电流或电压波动产生。由于膜附近未搅拌溶液层中的扩散极化,这些波动呈现出t的平方根时间进程,从而产生具有1/f频率依赖性的噪声。计算了孔隙渗透率在有限值和零之间随机切换的多孔膜的1/f噪声谱密度。得到了与报道的神经膜1/f噪声实验数据相符的宽频率范围和1/f噪声幅度。