Läuger P
Biochim Biophys Acta. 1978 Feb 21;507(2):337-49. doi: 10.1016/0005-2736(78)90427-3.
A formulism is described for the treatment of noise resulting from the transport of ions in channels containing an arbitrary number of activation energy barriers. The analysis is based on Nyquist's theorem and is therefore restricted to fluctuations around the equilibrium state. Within this limit the spectral intensities of current and voltage noise are given by the frequency-dependent admittance, which in turn is closely linked to the relaxation-time spectrum of the transport system. Explicit expressions for the spectral intensity of current noise are derived for channels with two and three energy barriers. The analysis may be used to predict the spectral intensity of noise from the gating system in nerve.
描述了一种用于处理在包含任意数量激活能垒的通道中离子传输所产生噪声的公式体系。该分析基于奈奎斯特定理,因此仅限于围绕平衡态的涨落。在此极限范围内,电流噪声和电压噪声的谱强度由频率相关导纳给出,而频率相关导纳又与传输系统的弛豫时间谱紧密相关。推导了具有两个和三个能垒的通道电流噪声谱强度的显式表达式。该分析可用于预测神经门控系统噪声的谱强度。