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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。

Relationship between adapted neural population responses in MT and motion adaptation in speed and direction of smooth-pursuit eye movements.

作者信息

Yang Jin, Lisberger Stephen G

机构信息

Howard Hughes Medical Institute, W.M. Keck Foundation Center for Integrative Neuroscience, and Department of Physiology, University of California, San Francisco, San Francisco, California 94143-0444, USA.

出版信息

J Neurophysiol. 2009 May;101(5):2693-707. doi: 10.1152/jn.00061.2009. Epub 2009 Feb 18.

Abstract

We have asked how sensory adaptation is represented in the response of a population of visual motion neurons and whether the neural adaptation could drive behavioral adaptation. Our approach was to evaluate the effects of about 10 s of motion adaptation on both smooth-pursuit eye movements and the responses of neuron populations in extrastriate middle temporal visual area (MT) in awake monkeys. Stimuli for neural recordings consisted of patches of 100% correlated dot textures. There was a wide range of effects across neurons, but on average adaptation reduced the amplitude and width of the direction tuning curves of MT neurons, without large changes in the preferred direction. The effects were greatest when the direction of the adapting stimulus corresponded to the preferred direction of the MT neuron under study. Adaptation also reduced the amplitude of speed-tuning curves, again with the greatest effect when the adapting speed was equal to the preferred speed. The adapted tuning curves were shifted toward lower preferred speeds as the adapting speed increased. We constructed populations of model MT neurons based on our experimental sample and showed that the effects of adaptation on the direction and speed of pursuit eye movements were predicted when a variant of vector averaging decoded the responses of a subset of the neural population. We conclude that the effects of motion adaptation on the responses of MT neurons can support behavioral adaptation in pursuit eye movements.

摘要

我们探讨了视觉运动神经元群体的反应中如何体现感觉适应,以及神经适应是否能够驱动行为适应。我们的方法是评估约10秒的运动适应对清醒猴子的平稳跟踪眼球运动和纹外中颞视觉区(MT)神经元群体反应的影响。用于神经记录的刺激由100%相关的点纹理斑块组成。不同神经元的影响范围很广,但平均而言,适应会降低MT神经元方向调谐曲线的幅度和宽度,而偏好方向没有大的变化。当适应刺激的方向与所研究的MT神经元的偏好方向一致时,影响最大。适应还会降低速度调谐曲线的幅度,同样,当适应速度等于偏好速度时,影响最大。随着适应速度的增加,适应后的调谐曲线会向更低的偏好速度偏移。我们根据实验样本构建了MT神经元模型群体,并表明当矢量平均的一种变体解码神经群体子集的反应时,可以预测适应对跟踪眼球运动方向和速度的影响。我们得出结论,运动适应对MT神经元反应的影响能够支持跟踪眼球运动中的行为适应。

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