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The Role of Binocular Disparity in Stereoscopic Images of Objects in the Macaque Anterior Intraparietal Area

机译:双眼视差在猕猴前腹膜内区物体的立体图像中的作用

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摘要

Neurons in the macaque Anterior Intraparietal area (AIP) encode depth structure in random-dot stimuli defined by gradients of binocular disparity, but the importance of binocular disparity in real-world objects for AIP neurons is unknown. We investigated the effect of binocular disparity on the responses of AIP neurons to images of real-world objects during passive fixation. We presented stereoscopic images of natural and man-made objects in which the disparity information was congruent or incongruent with disparity gradients present in the real-world objects, and images of the same objects where such gradients were absent. Although more than half of the AIP neurons were significantly affected by binocular disparity, the great majority of AIP neurons remained image selective even in the absence of binocular disparity. AIP neurons tended to prefer stimuli in which the depth information derived from binocular disparity was congruent with the depth information signaled by monocular depth cues, indicating that these monocular depth cues have an influence upon AIP neurons. Finally, in contrast to neurons in the inferior temporal cortex, AIP neurons do not represent images of objects in terms of categories such as animate-inanimate, but utilize representations based upon simple shape features including aspect ratio.
机译:猕猴前腹腔区域(AIP)中的神经元编码由双目视差的梯度定义的随机点刺激中的深度结构,但是在现实世界中,对于AIP神经元而言,双目视差的重要性并不明确。我们研究了在被动注视过程中双眼视差对AIP神经元对现实对象图像的响应的影响。我们提供了自然和人造物体的立体图像,其中视差信息与现实对象中存在的视差梯度一致或不一致,而没有此类梯度的相同物体的图像也是如此。尽管超过一半的AIP神经元受到双眼视差的显着影响,但即使没有双眼视差,绝大多数AIP神经元仍保持图像选择性。 AIP神经元倾向于偏爱刺激,在这种刺激中,来自双眼视差的深度信息与单眼深度提示所传达的深度信息一致,表明这些单眼深度提示对AIP神经元具有影响。最后,与下颞叶皮层中的神经元相反,AIP神经元不代表诸如有生命或无生命之类的物体图像,而是利用基于简单形状特征(包括长宽比)的表示。

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