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本文引用的文献

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Dynamics of extraclassical surround modulation in three types of V1 neurons.三种类型 V1 神经元中超类经典感受野调制的动力学。
J Neurophysiol. 2011 Mar;105(3):1306-17. doi: 10.1152/jn.00692.2010. Epub 2011 Jan 12.
2
Contrast-dependence of surround suppression in Macaque V1: experimental testing of a recurrent network model.猴 V1 中周边抑制的对比依赖性:对一个递归网络模型的实验检验。
Neuroimage. 2010 Sep;52(3):777-92. doi: 10.1016/j.neuroimage.2010.01.032. Epub 2010 Jan 15.
3
Parallel processing in the corticogeniculate pathway of the macaque monkey.猕猴皮质膝状体通路中的并行处理
Neuron. 2009 Apr 16;62(1):135-46. doi: 10.1016/j.neuron.2009.02.024.
4
Adaptable mechanisms that regulate the contrast response of neurons in the primate lateral geniculate nucleus.调节灵长类动物外侧膝状核中神经元对比反应的适应性机制。
J Neurosci. 2009 Apr 15;29(15):5009-21. doi: 10.1523/JNEUROSCI.0219-09.2009.
5
Contrast dependence of center and surround integration in primary visual cortex of the cat.猫初级视觉皮层中中心与周边整合的对比度依赖性
J Vis. 2009 Jan 16;9(1):20.1-15. doi: 10.1167/9.1.20.
6
Effects of binocular suppression on surround suppression.双眼抑制对周边抑制的影响。
J Vis. 2008 Jul 18;8(9):9.1-10. doi: 10.1167/8.9.9.
7
Origin and dynamics of extraclassical suppression in the lateral geniculate nucleus of the macaque monkey.猕猴外侧膝状核中经典外抑制的起源与动态变化
Neuron. 2008 Jan 10;57(1):135-46. doi: 10.1016/j.neuron.2007.11.019.
8
Excitatory and suppressive receptive field subunits in awake monkey primary visual cortex (V1).清醒猴初级视觉皮层(V1)中的兴奋性和抑制性感受野亚单位。
Proc Natl Acad Sci U S A. 2007 Nov 27;104(48):19120-5. doi: 10.1073/pnas.0706938104. Epub 2007 Nov 15.
9
Orientation tuning of surround suppression in lateral geniculate nucleus and primary visual cortex of cat.猫外侧膝状体和初级视觉皮层中周边抑制的方向调谐
Neuroscience. 2007 Nov 23;149(4):962-75. doi: 10.1016/j.neuroscience.2007.08.001. Epub 2007 Aug 9.
10
Response facilitation from the "suppressive" receptive field surround of macaque V1 neurons.猕猴V1神经元“抑制性”感受野周围的反应促进作用。
J Neurophysiol. 2007 Oct;98(4):2168-81. doi: 10.1152/jn.00298.2007. Epub 2007 Aug 8.

灵长类视觉皮层中大小调谐的不同机制。

Distinct mechanisms for size tuning in primate visual cortex.

机构信息

Center for Neuroscience, University of California, Davis, Davis, California 95618, USA.

出版信息

J Neurosci. 2011 Aug 31;31(35):12644-9. doi: 10.1523/JNEUROSCI.2268-11.2011.

DOI:10.1523/JNEUROSCI.2268-11.2011
PMID:21880925
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3172870/
Abstract

Most neurons in primary visual cortex (V1) are selective for stimulus size, a property with important implications for salient feature detection. Size selectivity involves dynamic interactions between neuronal circuits that establish the classical (center) and extraclassical (surround) of a neuron's receptive field. Although much is known about the tuning properties and stimulus selectivity of the center and surround subunits, relatively little is known about how these subunits interact to achieve size selectivity. To address this question, we examined the temporal dynamics of size selectivity in two classes of pyramidal neurons at similar hierarchical processing stages in V1 of alert monkeys. These two classes were comprised of neurons in cortical layer 6 with identified projections to the lateral geniculate nucleus. While both neuronal groups displayed comparable levels of size selectivity, the temporal dynamics of their tuning differed significantly. We compared the size tuning profiles of each cell type with a series of sum-of-Gaussian models and discovered that the receptive fields of neurons with fast-conducting axons contained an excitatory center and a suppressive surround with similar onset timing. In contrast, neurons with slow-conducting axons used two center components-an early wide-field component and a delayed narrow-field component that increased activity-in addition to the surround component. The early, wide-field component represents a novel mechanism for cortical neurons to integrate contextual information. These results demonstrate that size tuning in cortical neurons is established via multiple unique mechanisms, dictated by the rich circuit architecture in which neurons are embedded.

摘要

初级视皮层(V1)中的大多数神经元对刺激大小具有选择性,这一特性对显著特征检测具有重要意义。大小选择性涉及神经元回路之间的动态相互作用,这些回路建立了神经元感受野的经典(中心)和超经典(环绕)部分。尽管人们对中心和环绕亚单位的调谐特性和刺激选择性了解很多,但对于这些亚单位如何相互作用以实现大小选择性,人们的了解相对较少。为了解决这个问题,我们在警觉猴子 V1 的类似层次处理阶段研究了两类锥体神经元的大小选择性的时间动态。这两类神经元由具有向外侧膝状体核投射的皮质 6 层中的神经元组成。虽然这两个神经元群体都表现出相当水平的大小选择性,但它们的调谐时间动态有显著差异。我们将每种细胞类型的大小调谐曲线与一系列高斯和模型进行了比较,并发现具有快速传导轴突的神经元的感受野包含一个兴奋性中心和一个具有相似起始时间的抑制性环绕。相比之下,具有慢速传导轴突的神经元除了环绕部分外,还使用了两个中心成分——一个早期的宽场成分和一个延迟的窄场成分,后者增加了活动。早期的宽场成分代表了皮质神经元整合上下文信息的一种新机制。这些结果表明,皮质神经元的大小调谐是通过多种独特的机制建立的,这些机制由神经元所处的丰富电路结构决定。