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The statistical analysis of partially confounded covariates important to neural spiking

机译:对神经突波起重要作用的部分混杂协变量的统计分析

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摘要

A method is presented capable of disambiguating the relative influence of statistical covariates upon neural spiking activity. The method, an extension of the generalized linear model (GLM) methodology introduced in Truccolo et al. (2005) to analyze neural spiking data, exploits projection operations motivated by a geometry present in the Fisher information of the GLM maximum likelihood parameter estimator. By exploiting these projections, neural activity can be divided into three categories. These three categories, neural activity due solely to a set of covariates of interest, neural activity due solely to a set of uninteresting, or nuisance, covariates, and neural activity that cannot be unequivocally assigned to either set of covariates, can be associated with physical variables such as time, position, head-direction and velocity. This association allows the analysis of neural activity that can, for example, be due solely to temporal influence, irrespective of other, identified, influences. The method is applied in simulation to a rat exploring a temporally modulated place field. A portion of the analysis reported in MacDonald et al. (2011), using the methodology described herein, is reproduced. This analysis demonstrates the temporal bridging of a delay period in a sequential memory task by firing activity of cells present in the rodent hippocampus that cannot be explained by rodent position, head direction or velocity.
机译:提出了一种能够消除统计协变量对神经峰值活动的相对影响的方法。该方法是Truccolo等人引入的广义线性模型(GLM)方法的扩展。 (2005年)分析神经峰值数据,利用GLM最大似然参数估计器的Fisher信息中存在的几何形状所激发的投影操作。通过利用这些预测,神经活动可以分为三类。可以将这三类分别归因于一组感兴趣的协变量的神经活动,仅归因于一组无趣的或令人讨厌的协变量的神经活动以及不能明确分配给这两组协变量的神经活动可以与身体活动相关联时间,位置,头部方向和速度等变量。这种关联允许对神经活动的分析,该活动可以例如完全由于时间影响而与其他已确定的影响无关。该方法在模拟中应用于探索时间调制位置场的大鼠。 MacDonald等报道了部分分析。 (2011)使用本文描述的方法进行了复制。该分析通过激发啮齿动物海马中存在的细胞的活动来证明连续记忆任务中延迟时间的暂时桥接,而这不能用啮齿动物的位置,头部方向或速度来解释。

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