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模拟早期视觉系统中会聚的开式和闭式通路。

Modeling convergent ON and OFF pathways in the early visual system.

作者信息

Gollisch Tim, Meister Markus

机构信息

Visual Coding Group, Max Planck Institute of Neurobiology, Am Klopferspitz 18, 82152, Martinsried, Germany.

出版信息

Biol Cybern. 2008 Nov;99(4-5):263-78. doi: 10.1007/s00422-008-0252-y. Epub 2008 Nov 15.

Abstract

For understanding the computation and function of single neurons in sensory systems, one needs to investigate how sensory stimuli are related to a neuron's response and which biological mechanisms underlie this relationship. Mathematical models of the stimulus-response relationship have proved very useful in approaching these issues in a systematic, quantitative way. A starting point for many such analyses has been provided by phenomenological "linear-nonlinear" (LN) models, which comprise a linear filter followed by a static nonlinear transformation. The linear filter is often associated with the neuron's receptive field. However, the structure of the receptive field is generally a result of inputs from many presynaptic neurons, which may form parallel signal processing pathways. In the retina, for example, certain ganglion cells receive excitatory inputs from ON-type as well as OFF-type bipolar cells. Recent experiments have shown that the convergence of these pathways leads to intriguing response characteristics that cannot be captured by a single linear filter. One approach to adjust the LN model to the biological circuit structure is to use multiple parallel filters that capture ON and OFF bipolar inputs. Here, we review these new developments in modeling neuronal responses in the early visual system and provide details about one particular technique for obtaining the required sets of parallel filters from experimental data.

摘要

为了理解感觉系统中单个神经元的计算和功能,人们需要研究感觉刺激如何与神经元的反应相关,以及这种关系背后的生物学机制是什么。刺激-反应关系的数学模型已被证明在以系统、定量的方式处理这些问题时非常有用。许多此类分析的起点是现象学的“线性-非线性”(LN)模型,该模型由一个线性滤波器和一个静态非线性变换组成。线性滤波器通常与神经元的感受野相关。然而,感受野的结构通常是许多突触前神经元输入的结果,这些神经元可能形成并行信号处理通路。例如,在视网膜中,某些神经节细胞接收来自ON型和OFF型双极细胞的兴奋性输入。最近的实验表明,这些通路的汇聚导致了有趣的反应特性,而单个线性滤波器无法捕捉这些特性。调整LN模型以适应生物电路结构的一种方法是使用多个并行滤波器来捕捉ON和OFF双极输入。在这里,我们回顾了早期视觉系统中神经元反应建模的这些新进展,并详细介绍了一种从实验数据中获取所需并行滤波器集的特定技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f1f/2784078/5ec0f8d41056/422_2008_Article_252_Fig1.jpg

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