Neuronal and Behavioral Responses to Naturalistic Texture Images in Macaque Monkeys.

IF 4.4 2区 医学 Q1 NEUROSCIENCES Journal of Neuroscience Pub Date : 2024-10-16 DOI:10.1523/JNEUROSCI.0349-24.2024
Corey M Ziemba, Robbe L T Goris, Gabriel M Stine, Richard K Perez, Eero P Simoncelli, J Anthony Movshon
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Abstract

The visual world is richly adorned with texture, which can serve to delineate important elements of natural scenes. In anesthetized macaque monkeys, selectivity for the statistical features of natural texture is weak in V1, but substantial in V2, suggesting that neuronal activity in V2 might directly support texture perception. To test this, we investigated the relation between single cell activity in macaque V1 and V2 and simultaneously measured behavioral judgments of texture. We generated stimuli along a continuum between naturalistic texture and phase-randomized noise and trained two macaque monkeys to judge whether a sample texture more closely resembled one or the other extreme. Analysis of responses revealed that individual V1 and V2 neurons carried much less information about texture naturalness than behavioral reports. However, the sensitivity of V2 neurons, especially those preferring naturalistic textures, was significantly closer to that of behavior compared with V1. The firing of both V1 and V2 neurons predicted perceptual choices in response to repeated presentations of the same ambiguous stimulus in one monkey, despite low individual neural sensitivity. However, neither population predicted choice in the second monkey. We conclude that neural responses supporting texture perception likely continue to develop downstream of V2. Further, combined with neural data recorded while the same two monkeys performed an orientation discrimination task, our results demonstrate that choice-correlated neural activity in early sensory cortex is unstable across observers and tasks, untethered from neuronal sensitivity, and therefore unlikely to directly reflect the formation of perceptual decisions.

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猕猴对自然纹理图像的神经元和行为反应
视觉世界中蕴含着丰富的纹理,这些纹理可以勾勒出自然场景中的重要元素。在无脊椎动物猕猴的 V1 中,对自然纹理统计特征的选择性很弱,但在 V2 中却很强,这表明 V2 中的神经元活动可能直接支持纹理感知。为了验证这一点,我们研究了猕猴 V1 和 V2 单细胞活动与同时测量的纹理行为判断之间的关系。我们沿着自然纹理和相位随机噪音之间的连续统一体生成刺激物,并训练两只猕猴判断样本纹理是更接近其中一个极端还是另一个极端。对反应的分析表明,与行为报告相比,单个 V1 和 V2 神经元所携带的纹理自然度信息要少得多。然而,与 V1 神经元相比,V2 神经元(尤其是那些偏好自然纹理的神经元)的灵敏度明显更接近行为报告。尽管单个神经元的灵敏度较低,但一只猴子在重复出现相同的模糊刺激时,V1 和 V2 神经元的发射都能预测其知觉选择。然而,这两个神经元群都不能预测第二只猴子的选择。我们的结论是,支持纹理感知的神经反应很可能继续在 V2 的下游发展。此外,结合同样两只猴子在执行方位辨别任务时记录的神经数据,我们的结果表明,早期感觉皮层中与选择相关的神经活动在不同观察者和不同任务中都是不稳定的,与神经元敏感性无关,因此不太可能反映知觉决策形成的一个关键方面。我们复制并扩展了之前从无脊椎动物猴那里获得的结果,这些结果区分了从 V1 区到 V2 区的皮层视觉第一步神经元的选择性。然而,我们的研究结果使建立神经特征以揭示感知与感觉群神经元活动之间关系的工作变得更加复杂。我们发现在不同的观察者和任务中,V1 和 V2 中与选择相关的活动并不稳定,而且与神经元敏感性和其他非感觉反应调制特征无关。
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来源期刊
Journal of Neuroscience
Journal of Neuroscience 医学-神经科学
CiteScore
9.30
自引率
3.80%
发文量
1164
审稿时长
12 months
期刊介绍: JNeurosci (ISSN 0270-6474) is an official journal of the Society for Neuroscience. It is published weekly by the Society, fifty weeks a year, one volume a year. JNeurosci publishes papers on a broad range of topics of general interest to those working on the nervous system. Authors now have an Open Choice option for their published articles
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