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猴颞下回神经元对亮度、运动和纹理定义光栅的反应。

Responses of monkey inferior temporal neurons to luminance-, motion-, and texture-defined gratings.

作者信息

Sáry G, Vogels R, Kovács G, Orban G A

机构信息

Laboratorium voor Neuro- en Psychofysiologie, Katholieke Universiteit te Leuven, Belgium.

出版信息

J Neurophysiol. 1995 Apr;73(4):1341-54. doi: 10.1152/jn.1995.73.4.1341.

Abstract
  1. We recorded from neurons responsive to gratings in the inferior temporal (IT) cortices of macaque monkeys. One of the monkeys performed an orientation discrimination task; the other maintained fixation during stimulus presentation. Stimuli consisted of gratings based on discontinuities in luminance, relative motion, and texture. 2. IT cells responded well to gratings defined solely by relative motion, implying either direct or indirect motion input into IT, an area that is part of the ventral visual cortical pathway. 3. Response strength in general did not depend on the cue used to define the gratings. Latency values observed for the two static grating types (luminance- and texture-defined gratings) were similar, but significantly shorter than those measured for the kinetic gratings. 4. Stimulus orientation had a significant effect in 27%, 27%, and 9% of the cells tested with luminance-, kinetic-, and texture-defined gratings, respectively. 5. Only a small proportion of cells were orientation sensitive for more than one defining cue. The average preferred orientation for luminance and kinetic gratings matched; the tuning width was similar for the two cues. 6. Our results indicate that IT cells may contribute to cue-invariant coding of boundaries and edges. We discuss the relevance of these results to visual perception.
摘要
  1. 我们在猕猴颞下(IT)皮质中记录了对光栅有反应的神经元。其中一只猴子执行方向辨别任务;另一只在刺激呈现期间保持注视。刺激由基于亮度、相对运动和纹理不连续性的光栅组成。2. IT细胞对仅由相对运动定义的光栅反应良好,这意味着有直接或间接的运动输入到IT,IT是腹侧视觉皮质通路的一部分。3. 总体而言,反应强度并不取决于用于定义光栅的线索。观察到的两种静态光栅类型(亮度和纹理定义的光栅)的潜伏期值相似,但明显短于动态光栅测量的潜伏期值。4. 分别用亮度、动态和纹理定义的光栅测试的细胞中,刺激方向对27%、27%和9%的细胞有显著影响。5. 只有一小部分细胞对不止一种定义线索具有方向敏感性。亮度和动态光栅的平均偏好方向匹配;两种线索的调谐宽度相似。6. 我们的结果表明,IT细胞可能有助于对边界和边缘进行线索不变编码。我们讨论了这些结果与视觉感知的相关性。

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