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图形-背景分离中神经反应与人类感知之间的相关性。

Correlation between neural responses and human perception in figure-ground segregation.

作者信息

Shishikura Motofumi, Tamura Hiroshi, Sakai Ko

机构信息

Department of Computer Science, University of Tsukuba, Tsukuba, Japan.

Graduate School of Frontier Biosciences, Osaka University, Suita, Japan.

出版信息

Front Syst Neurosci. 2023 Jan 12;16:999575. doi: 10.3389/fnsys.2022.999575. eCollection 2022.

Abstract

Segmentation of a natural scene into objects (figures) and background (ground) is one of crucial functions for object recognition and scene understanding. Recent studies have investigated neural mechanisms underlying figure-ground (FG) segregation and reported neural modulation to FG in the intermediate-level visual area, V4, of macaque monkeys (FG neurons). However, whether FG neurons contribute to the perception of FG segregation has not been clarified. To examine the contribution of FG neurons, we examined the correlations between perceptual consistency (PC), which quantified perceptual ambiguity in FG determination, and the reliability of neural signals in response to FG. First, we evaluated PCs for the images that were used in the previous neural recording in V4; specifically, we measured how consistently FG can be determined across trials and participants for each stimulus. The PCs were widely distributed, so that we identified the ambiguity in FG segregation for each stimulus. Next, we analyzed the correlation between the PCs and the reliability of neural modulation to FG. We found that the stimuli with higher PCs evoked more consistent and greater modulation in the responses of single neurons than those with lower PCs. Since perception is expected to show a greater correlation with responses of neural population compared to those of single neurons, we examined the correlation between the PCs and the consistency of the population responses in FG determination. Stimuli with higher PCs evoked higher population consistency than those with lower PCs. Finally, we analyzed the correlation between the PCs and neural latencies in FG modulation. We found that the stimuli with higher PCs showed shorter reaction times in FG perception and evoked shorter modulation latencies in FG neurons. These results indicate that the responses of FG neurons recorded from macaque monkeys show significant correlations with human FG perception, suggesting that V4 neurons with FG-dependent responses contribute to the perception of FG segregation.

摘要

将自然场景分割为物体(图形)和背景是物体识别和场景理解的关键功能之一。最近的研究探讨了图形-背景(FG)分离的神经机制,并报告了猕猴中级视觉区域V4中对FG的神经调制(FG神经元)。然而,FG神经元是否有助于FG分离的感知尚未明确。为了研究FG神经元的作用,我们检查了感知一致性(PC)(量化FG确定中的感知模糊性)与响应FG的神经信号可靠性之间的相关性。首先,我们评估了先前在V4进行神经记录时使用的图像的PC;具体而言,我们测量了每个刺激在不同试验和参与者之间FG确定的一致性程度。PC分布广泛,因此我们确定了每个刺激在FG分离中的模糊性。接下来,我们分析了PC与FG神经调制可靠性之间的相关性。我们发现,与PC较低的刺激相比,PC较高的刺激在单个神经元反应中引发的调制更一致且更强。由于预期感知与神经群体反应的相关性要大于与单个神经元反应的相关性,我们检查了PC与FG确定中群体反应一致性之间的相关性。PC较高的刺激比PC较低的刺激引发更高的群体一致性。最后,我们分析了PC与FG调制中神经潜伏期之间的相关性。我们发现,PC较高的刺激在FG感知中显示出更短的反应时间,并且在FG神经元中引发更短的调制潜伏期。这些结果表明,从猕猴记录的FG神经元反应与人类FG感知存在显著相关性,这表明具有FG依赖性反应的V4神经元有助于FG分离的感知。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9068/9877615/f4641219a9ce/fnsys-16-999575-g001.jpg

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