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Visual guidance of smooth-pursuit eye movements: sensation, action, and what happens in between.平滑追踪眼球运动的视觉引导:感觉、动作以及两者之间的关系。
Neuron. 2010 May 27;66(4):477-91. doi: 10.1016/j.neuron.2010.03.027.
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The role of V1 surround suppression in MT motion integration.V1 周边抑制在 MT 运动整合中的作用。
J Neurophysiol. 2010 Jun;103(6):3123-38. doi: 10.1152/jn.00654.2009. Epub 2010 Mar 24.
3
Spatial and temporal integration of visual motion signals for smooth pursuit eye movements in monkeys.猴子平滑追踪眼球运动中视觉运动信号的时空整合。
J Neurophysiol. 2009 Oct;102(4):2013-25. doi: 10.1152/jn.00611.2009. Epub 2009 Aug 5.
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Memory and decision making in the frontal cortex during visual motion processing for smooth pursuit eye movements.在平稳跟踪眼球运动的视觉运动处理过程中额叶皮质的记忆与决策
Neuron. 2009 Jun 11;62(5):717-32. doi: 10.1016/j.neuron.2009.05.010.
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Noise correlations in cortical area MT and their potential impact on trial-by-trial variation in the direction and speed of smooth-pursuit eye movements.视觉皮层MT区的噪声相关性及其对平稳跟踪眼球运动方向和速度的逐次变化的潜在影响。
J Neurophysiol. 2009 Jun;101(6):3012-30. doi: 10.1152/jn.00010.2009. Epub 2009 Mar 25.
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Relationship between adapted neural population responses in MT and motion adaptation in speed and direction of smooth-pursuit eye movements.MT区适应性神经群体反应与平稳跟踪眼球运动的速度和方向上的运动适应之间的关系。
J Neurophysiol. 2009 May;101(5):2693-707. doi: 10.1152/jn.00061.2009. Epub 2009 Feb 18.
7
Cognitive processes involved in smooth pursuit eye movements.平稳跟踪眼球运动所涉及的认知过程。
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Spatial summation properties of the human ocular following response (OFR): evidence for nonlinearities due to local and global inhibitory interactions.人类眼跟踪反应(OFR)的空间总和特性:局部和全局抑制性相互作用导致非线性的证据。
Vision Res. 2008 Aug;48(17):1758-76. doi: 10.1016/j.visres.2008.05.017. Epub 2008 Jul 7.
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Ocular following responses of monkeys to the competing motions of two sinusoidal gratings.猴子对两个正弦光栅竞争运动的眼跟踪反应。
Neurosci Res. 2008 May;61(1):56-69. doi: 10.1016/j.neures.2008.01.010. Epub 2008 Jan 31.
10
Motion integration by neurons in macaque MT is local, not global.猕猴MT区神经元的运动整合是局部的,而非全局的。
J Neurosci. 2007 Jan 10;27(2):366-70. doi: 10.1523/JNEUROSCI.3183-06.2007.

感觉与运动部位在平滑追踪眼球运动和人类运动感知中对多种运动信号的整合。

Sensory versus motor loci for integration of multiple motion signals in smooth pursuit eye movements and human motion perception.

机构信息

Department of Physiology, Howard Hughes Medical Institute, University of California, San Francisco, California, USA.

出版信息

J Neurophysiol. 2011 Aug;106(2):741-53. doi: 10.1152/jn.01025.2010. Epub 2011 May 18.

DOI:10.1152/jn.01025.2010
PMID:21593392
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3154821/
Abstract

We have investigated how visual motion signals are integrated for smooth pursuit eye movements by measuring the initiation of pursuit in monkeys for pairs of moving stimuli of the same or differing luminance. The initiation of pursuit for pairs of stimuli of the same luminance could be accounted for as a vector average of the responses to the two stimuli singly. When stimuli comprised two superimposed patches of moving dot textures, the brighter stimulus suppressed the inputs from the dimmer stimulus, so that the initiation of pursuit became winner-take-all when the luminance ratio of the two stimuli was 8 or greater. The dominance of the brighter stimulus could be not attributed to either the latency difference or the ratio of the eye accelerations for the bright and dim stimuli presented singly. When stimuli comprised either spot targets or two patches of dots moving across separate locations in the visual field, the brighter stimulus had a much weaker suppressive influence; the initiation of pursuit could be accounted for by nearly equal vector averaging of the responses to the two stimuli singly. The suppressive effects of the brighter stimulus also appeared in human perceptual judgments, but again only for superimposed stimuli. We conclude that one locus of the interaction of two moving visual stimuli is shared by perception and action and resides in local inhibitory connections in the visual cortex. A second locus resides deeper in sensory-motor processing and may be more closely related to action selection than to stimulus selection.

摘要

我们研究了视觉运动信号如何在平滑追踪眼球运动中进行整合,方法是测量猴子对相同或不同亮度的移动刺激对进行追踪启动的情况。对于相同亮度的刺激对,追踪启动可以被视为对两个刺激单独反应的向量平均值。当刺激由两个叠加的运动点纹理斑块组成时,较亮的刺激会抑制较暗刺激的输入,因此当两个刺激的亮度比为 8 或更大时,追踪启动成为赢家通吃。较亮刺激的优势不能归因于两个刺激单独呈现时的潜伏期差异或眼睛加速度比。当刺激由点目标或两个斑块的点在视野中分别移动组成时,较亮的刺激的抑制作用要弱得多;追踪启动可以通过对两个刺激单独反应的几乎相等的向量平均值来解释。较亮刺激的抑制作用也出现在人类的感知判断中,但也仅适用于叠加的刺激。我们的结论是,两个运动视觉刺激相互作用的一个位置是由感知和行动共享的,并且位于视觉皮层中的局部抑制连接中。第二个位置位于感觉运动处理的更深层次,与动作选择的关系可能比与刺激选择的关系更密切。