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首页> 外文期刊>Journal of vision >Cone signal interactions in direction-selective neurons in the middle temporal visual area (MT)
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Cone signal interactions in direction-selective neurons in the middle temporal visual area (MT)

机译:颞中视区(MT)方向选择神经元中的锥体信号相互作用

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Many experimental measurements support the hypothesis that the middle temporal visual area (MT) of the rhesus monkey has a central role in processing visual motion. Most of these studies were performed using luminance stimuli, leaving open the question of how color information is used during motion processing. We investigated the specific question of how S-cone signals, an important source of color information, interact with L,M-cone signals, the dominant source of luminance information. In MT, S-cone-initiated signals combine synergistically with L,M-cone (luminance) signals over most of the stimulus range, regardless of whether the stimuli are added or subtracted. A quantitative analysis of the responses to the combination of S- and L,M-cone signals shows that for a significant minority of cells, these S-cone signals are carried to MT by a color-opponent (“blue-yellow”) pathway, such that in certain limited contrast ranges, a small amount of S- and L,M-cone cancellation is observed. Both S- and L,M-cone responses are direction-selective, suggesting that MT processes a wide range of motion signals, including those carried by luminance and color. To investigate this possibility further, we measured MT responses while monkeys discriminated the direction of motion of luminance and S-cone-initiated gratings. The sensitivity of single MT neurons and the correlation between trial-to-trial variations in single neuron firing and perception are similar for S- and L,M-cone stimuli, further supporting a role for MT in processing chromatic motion.
机译:许多实验测量结果支持以下假设:恒河猴的中间颞部视觉区域(MT)在处理视觉运动中起着核心作用。这些研究大多数是使用亮度刺激来进行的,这留下了在运动处理期间如何使用色彩信息的问题。我们研究了一个特定的问题,即作为颜色信息的重要来源的S-圆锥信号如何与作为亮度信息的主要来源的L,M-圆锥信号相互作用。在MT中,在大多数刺激范围内,S锥引发的信号与L,M锥(亮度)信号协同组合,而不管刺激是增加还是减少。对S和L,M圆锥信号组合的响应的定量分析表明,对于显着少数细胞,这些S圆锥信号通过颜色对手(“蓝黄色”)途径携带到MT ,使得在某些有限的对比度范围内,观察到少量的S-和L,M-锥形消除。 S和L,M圆锥响应都是方向选择性的,这表明MT处理的运动信号范围很广,包括亮度和颜色所携带的信号。为了进一步研究这种可能性,我们在猴子区分亮度和S锥引发的光栅运动方向的同时测量了MT响应。对于S和L,M锥刺激,单个MT神经元的敏感度以及单个神经元激发和知觉的试验变化之间的相关性相似,进一步支持了MT在处理色运动中的作用。

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