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A baseline detection method for analyzing transient electrophysiological events.

机译:一种用于分析瞬时电生理事件的基线检测方法。

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摘要

A baseline detection method has been developed that identifies and defines event transitions for whole-cell voltage or current ('transient') events that are produced by the activity of ion channel ensembles. The method utilizes a variety of iterative techniques that independently determine, for each event, several output parameters that are ultimately referrable to the mean and variance of each pre-event baseline. Examination of miniature endplate potentials using the baseline detection method provided the following output parameters for each transient event: pre-event mean and variance; rise time; peak amplitude and duration; a determination of whether the decay phase was best fit by a one- or two-component negative exponential function; time constants for the slow and/or fast decay components; percent contribution of the slow component to the decay phase; and the predicted peak amplitude determined by extrapolation of the least squares fit to the decay phase. Joint probability density representationsinvolving the rise time and peak amplitudes of miniature endplate potentials indicated the power of this multivariate approach in identifying and isolating specific event classes. The baseline detection method is particularly advantageous for analyzing records containing multiple classes of event amplitudes, and provides a reproducible statistical standard for the analyses of transient events that are characteristic of whole-cell electrophysiological recordings.
机译:已经开发出一种基线检测方法,该方法可以识别和定义由离子通道集合体的活动产生的全细胞电压或电流(“瞬态”)事件的事件转变。该方法利用了各种迭代技术,这些技术针对每个事件独立确定几个输出参数,这些输出参数最终可参考每个事件前基线的均值和方差。使用基线检测方法检查微型终板电势可为每个瞬态事件提供以下输出参数:事件前均值和方差;上升时间;峰值幅度和持续时间;通过一分量或二分量负指数函数确定衰减相位是否最合适;慢和/或快衰减分量的时间常数;慢速分量对衰减阶段的贡献百分比;通过最小二乘法外推法确定的预测峰幅度与衰减相位拟合。涉及微型终板电势的上升时间和峰值幅度的联合概率密度表示法表明了这种多变量方法在识别和隔离特定事件类别中的作用。基线检测方法对于分析包含多类事件幅度的记录特别有利,并且为分析具有全细胞电生理记录特征的瞬态事件提供了可重现的统计标准。

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