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不同的丰富多样的神经簇调节粗略和精细的双眼视差处理:基于立体视觉任务的功能磁共振成像证据。

Distinct rich and diverse clubs regulate coarse and fine binocular disparity processing: Evidence from stereoscopic task-based fMRI.

作者信息

Lohia Kritika, Soans Rijul Saurabh, Saxena Rohit, Mahajan Kabir, Gandhi Tapan K

机构信息

Department of Electrical Engineering, Indian Institute of Technology - Delhi, New Delhi, India.

Laboratory of Experimental Ophthalmology, University Medical Center Groningen, University of Groningen, Groningen, the Netherlands.

出版信息

iScience. 2024 Apr 26;27(6):109831. doi: 10.1016/j.isci.2024.109831. eCollection 2024 Jun 21.

Abstract

While cortical regions involved in processing binocular disparities have been studied extensively, little is known on how the human visual system adapts to changing disparity magnitudes. In this paper, we investigate causal mechanisms of coarse and fine binocular disparity processing using fMRI with a clinically validated, custom anaglyph-based stimulus. We make use of Granger causality and graph measures to reveal the existence of distinct rich and diverse clubs across different disparity magnitudes. We demonstrate that Middle Temporal area (MT) plays a specialized role with overlapping rich and diverse characteristics. Next, we show that subtle interhemispheric differences exist across various brain regions, despite an overall right hemisphere dominance. Finally, we pass the graph measures through the decision tree and found that the diverse clubs outperform rich clubs in decoding disparity magnitudes. Our study sets the stage for conducting further investigations on binocular disparity processing, particularly in the context of neuro-ophthalmic disorders with binocular impairments.

摘要

虽然参与处理双眼视差的皮质区域已得到广泛研究,但对于人类视觉系统如何适应不断变化的视差幅度却知之甚少。在本文中,我们使用经临床验证的基于定制互补色立体图的刺激,通过功能磁共振成像(fMRI)研究粗略和精细双眼视差处理的因果机制。我们利用格兰杰因果关系和图论方法来揭示不同视差幅度下存在独特的丰富多样的集群。我们证明颞中区(MT)发挥着具有重叠丰富多样特征的特殊作用。接下来,我们表明尽管总体上右半球占主导,但不同脑区存在细微的半球间差异。最后,我们将图论方法应用于决策树,发现多样集群在解码视差幅度方面优于丰富集群。我们的研究为进一步开展双眼视差处理的研究奠定了基础,特别是在患有双眼损伤的神经眼科疾病背景下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae0e/11111836/f73136ba7306/fx1.jpg

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