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外侧膝状核中的扩张性非线性处理增强了对比敏感度。

Contrast sensitivity is enhanced by expansive nonlinear processing in the lateral geniculate nucleus.

作者信息

Duong Thang, Freeman Ralph D

机构信息

Group in Vision Science, School of Optometry, and Helen Wills Neuroscience Institute, University of California, Berkeley, Berkeley, California 94720-2020, USA.

出版信息

J Neurophysiol. 2008 Jan;99(1):367-72. doi: 10.1152/jn.00873.2007. Epub 2007 Oct 24.

Abstract

The firing rates of neurons in the central visual pathway vary with stimulus strength, but not necessarily in a linear manner. In the contrast domain, the neural response function for cells in the primary visual cortex is characterized by expansive and compressive nonlinearities at low and high contrasts, respectively. A compressive nonlinearity at high contrast is also found for early visual pathway neurons in the lateral geniculate nucleus (LGN). This mechanism affects processing in the visual cortex. A fundamentally related issue is the possibility of an expansive nonlinearity at low contrast in LGN. To examine this possibility, we have obtained contrast-response data for a population of LGN neurons. We find for most cells that the best-fit function requires an expansive component. Additionally, we have measured the responses of LGN neurons to m-sequence white noise and examined the static relationship between a linear prediction and actual spike rate. We find that this static relationship is well fit by an expansive nonlinear power law with average exponent of 1.58. These results demonstrate that neurons in early visual pathways exhibit expansive nonlinear responses at low contrasts. Although this thalamic expansive nonlinearity has been largely ignored in models of early visual processing, it may have important consequences because it potentially affects the interpretation of a variety of visual functions.

摘要

中枢视觉通路中神经元的放电频率随刺激强度而变化,但不一定呈线性变化。在对比度领域,初级视觉皮层中细胞的神经反应函数分别以低对比度下的扩张性非线性和高对比度下的压缩性非线性为特征。在外侧膝状体核(LGN)的早期视觉通路神经元中也发现了高对比度下的压缩性非线性。这种机制影响视觉皮层的处理。一个根本相关的问题是LGN中低对比度下存在扩张性非线性的可能性。为了研究这种可能性,我们获得了一群LGN神经元的对比度-反应数据。我们发现,对于大多数细胞来说,最佳拟合函数需要一个扩张成分。此外,我们测量了LGN神经元对m序列白噪声的反应,并研究了线性预测与实际放电率之间的静态关系。我们发现,这种静态关系可以用平均指数为1.58的扩张性非线性幂律很好地拟合。这些结果表明,早期视觉通路中的神经元在低对比度下表现出扩张性非线性反应。尽管这种丘脑扩张性非线性在早期视觉处理模型中大多被忽视,但它可能具有重要影响,因为它可能会影响对各种视觉功能的解释。

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