Shamir Maoz, Sen Kamal, Colburn H Steven
Hearing Research Center, Department of Biomedical Engineering, Boston University, Boston, MA 02215, USA.
Neural Comput. 2007 Dec;19(12):3239-61. doi: 10.1162/neco.2007.19.12.3239.
Temporal structure is an inherent property of various sensory inputs and motor outputs of the brain. For example, auditory stimuli are defined by the sound waveform. Temporal structure is also an important feature of certain visual stimuli, for example, the image on the retina of a fly during flight. In many cases, this temporal structure of the stimulus is being represented by a time-dependent neuronal activity that is locked to certain features of the stimulus. Here, we study the information capacity of the temporal code. In particular we are interested in the following questions. First, how does the information content of the code depend on the observation time of the cell's response, and what is the effect of temporal noise correlations on this information capacity? Second, what is the effect on the information content of reading the code with a finite temporal resolution for the neural response? We address these questions in the framework of a statistical model for the neuronal temporal response to a time-varying stimulus in a two-alternative forced-choice paradigm. We show that information content of the temporal response scales linearly with the overall time of the response, even in the presence of temporal noise correlations. More precisely, we find that positive temporal noise correlations have a scaling effect that decreases the information content. Nevertheless, the information content of the response continues to scale linearly with the observation time. We further show that finite temporal resolution is sufficient for obtaining most of the information from the cell's response. This finite timescale is related to the response properties of the cell.
时间结构是大脑各种感觉输入和运动输出的固有属性。例如,听觉刺激由声音波形定义。时间结构也是某些视觉刺激的重要特征,例如,苍蝇飞行时视网膜上的图像。在许多情况下,这种刺激的时间结构由与刺激的某些特征锁定的随时间变化的神经元活动来表示。在这里,我们研究时间编码的信息容量。特别地,我们对以下问题感兴趣。第一,编码的信息内容如何依赖于细胞反应的观察时间,以及时间噪声相关性对这种信息容量有什么影响?第二,以有限的时间分辨率读取神经反应编码对信息内容有什么影响?我们在双选强制选择范式中针对随时间变化的刺激的神经元时间反应的统计模型框架内解决这些问题。我们表明,即使存在时间噪声相关性,时间反应的信息内容也与反应的总时间成线性比例。更确切地说,我们发现正的时间噪声相关性具有一种比例效应,会降低信息内容。然而,反应的信息内容继续与观察时间成线性比例。我们进一步表明,有限的时间分辨率足以从细胞反应中获取大部分信息。这个有限的时间尺度与细胞的反应特性有关。