Dimitrov Alexander G, Sheiko Melissa A, Baker Jonathan, Yen Shih-Cheng
Center for Computational Biology, Montana State University, Bozeman, MT 59717, USA.
J Comput Neurosci. 2009 Dec;27(3):309-19. doi: 10.1007/s10827-009-0144-8. Epub 2009 Apr 8.
The functional properties of neural sensory cells or small neural ensembles are often characterized by analyzing response-conditioned stimulus ensembles. Many widely used analytical methods, like receptive fields (RF), Wiener kernels or spatio-temporal receptive fields (STRF), rely on simple statistics of those ensembles. They also tend to rely on simple noise models for the residuals of the conditional ensembles. However, in many cases the response-conditioned stimulus set has more complex structure. If not taken explicitly into account, it can bias the estimates of many simple statistics, and lead to erroneous conclusions about the functionality of a neural sensory system. In this article, we consider sensory noise in the visual system generated by small stimulus shifts in two dimensions (2 spatial or 1-space 1-time jitter). We model this noise as the action of a set of translations onto the stimulus that leave the response invariant. The analysis demonstrates that the spike-triggered average is a biased estimator of the model mean, and provides a de-biasing method. We apply this approach to observations from the stimulus/response characteristics of cells in the cat visual cortex and provide improved estimates of the structure of visual receptive fields. In several cases the new estimates differ substantially from the classic receptive fields, to a degree that may require re-evaluation of the functional description of the associated cells.
神经感觉细胞或小型神经集合的功能特性通常通过分析响应条件刺激集合来表征。许多广泛使用的分析方法,如感受野(RF)、维纳核或时空感受野(STRF),都依赖于这些集合的简单统计量。它们还倾向于依赖简单的噪声模型来处理条件集合的残差。然而,在许多情况下,响应条件刺激集具有更复杂的结构。如果没有明确考虑到这一点,它可能会使许多简单统计量的估计产生偏差,并导致关于神经感觉系统功能的错误结论。在本文中,我们考虑二维(2个空间或1个空间1个时间抖动)中小刺激偏移在视觉系统中产生的感觉噪声。我们将这种噪声建模为一组平移对刺激的作用,这些平移使响应不变。分析表明,尖峰触发平均值是模型均值的有偏估计,并提供了一种去偏方法。我们将这种方法应用于猫视觉皮层细胞的刺激/响应特性观察中,并对视觉感受野的结构提供了改进的估计。在几种情况下,新的估计与经典感受野有很大不同,其程度可能需要重新评估相关细胞的功能描述。