Novák Pavel, Zahradník Ivan
Institute of Molecular Physiology and Genetics, Slovak Academy of Sciences, Vlárska 5, 833 34 Bratislava, Slovak Republic.
Ann Biomed Eng. 2006 Jul;34(7):1201-12. doi: 10.1007/s10439-006-9140-6. Epub 2006 Jun 20.
High-resolution measurements of cell impedance provide invaluable information on various cellular processes such as exocytosis, ion channel gating, or fertilization. The best recent techniques, although achieving impedance resolution at theoretical limits, have limited applicability due to their inherent constrains and high complexity. We report here a simple method of high-resolution impedance measurement, dubbed as the Q-method, based on measurement of a charge by integrating the cell current during square wave stimulation and on its decomposition into specific components related to segments of the voltage stimulus. Simple relations were derived allowing very fast and direct estimation of cell impedance parameters. The major advantages of the Q-method are its inherently low sensitivity to low-pass filtering, rejection of periodic interference signals, automatic on-the-fly adjustment of the stimulation frequency for the highest capacitance resolution, and simultaneous high-resolution low-crosstalk monitoring of membrane resistance, series resistance and parasitic capacitance in addition to membrane capacitance. Implementation of the Q-method is straightforward with any patch-clamp setup and any cell type. Theoretical grounds of the Q-method, including its resolution and the noise of individual parameters, are developed and experimentally verified.
细胞阻抗的高分辨率测量为各种细胞过程提供了宝贵信息,如胞吐作用、离子通道门控或受精过程。尽管最近的最佳技术在理论极限下实现了阻抗分辨率,但由于其固有的限制和高复杂性,适用性有限。我们在此报告一种简单的高分辨率阻抗测量方法,称为Q方法,该方法基于在方波刺激期间通过对细胞电流进行积分来测量电荷,并将其分解为与电压刺激段相关的特定分量。推导了简单的关系式,可非常快速直接地估计细胞阻抗参数。Q方法的主要优点是其对低通滤波的固有低灵敏度、对周期性干扰信号的抑制、为实现最高电容分辨率而自动实时调整刺激频率,以及除了膜电容外,还能同时对膜电阻、串联电阻和寄生电容进行高分辨率低串扰监测。Q方法的实现对于任何膜片钳设置和任何细胞类型都很简单。本文阐述并通过实验验证了Q方法的理论基础,包括其分辨率和各个参数的噪声。