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首页> 外文期刊>Journal of Neuroscience Methods >Determination of channel open probabilities from multichannel data.
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Determination of channel open probabilities from multichannel data.

机译:根据多通道数据确定通道打开概率。

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We developed a method for determining whether channels in a multichannel patch or bilayer have the same or statistically significantly different open probabilities. We use a maximum likelihood method to fit the distribution of (unbinned) current amplitudes and to provide estimates of individual channel open probabilities, single channel currents, and standard deviations of the channel currents. These parameters are used to compare models with increasing constraints on the open probabilities including the model where all channels have different open probabilities and the model where all channels have the same open probability. A chi 2 statistic is used to identify models that are statistically less likely to predict the data. The ability of multichannel data to determine individual open probabilities is limited by two factors: the signal to noise ratio of the record and the fact that changes in amplitude distributions caused by a 0.2 difference in open probabilities are comparable in magnitude to the variations caused by random channel gating. These limitations notwithstanding, we demonstrate the utility of our approach by using it to analyze the open probabilities of 3 large conductance Ca2(+)-activated K+ channels in an artificial lipid bilayer revealing the response of one of those channels to GTP gamma S.
机译:我们开发了一种确定多通道补丁或双层中的通道是否具有相同或统计上显着不同的打开概率的方法。我们使用最大似然方法来拟合(未绑定)电流幅度的分布,并提供各个通道打开概率,单通道电流和通道电流的标准偏差的估计值。这些参数用于比较对开放概率有增加约束的模型,包括所有通道具有不同开放概率的模型和所有通道具有相同开放概率的模型。 chi 2统计量用于识别统计上不太可能预测数据的模型。多通道数据确定单个打开概率的能力受到两个因素的限制:记录的信噪比,以及由打开概率的0.2差引起的幅度分布变化在大小上与随机引起的变化相当。通道门控。尽管存在这些限制,但我们通过使用它来分析人工脂质双层中3个大电导Ca2(+)激活的K +通道的开放概率来揭示该方法的实用性,从而揭示了这些通道之一对GTPγS的响应。

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