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混合极性随机点立体图改变早期视觉皮层中的 GABA 和 Glx 浓度。

Mixed-polarity random-dot stereograms alter GABA and Glx concentration in the early visual cortex.

机构信息

Department of Psychology, University of Cambridge, Cambridge, United Kingdom.

出版信息

J Neurophysiol. 2019 Aug 1;122(2):888-896. doi: 10.1152/jn.00208.2019. Epub 2019 Jul 10.

Abstract

The offset between images projected onto the left and right retina (binocular disparity) provides a powerful cue to the three-dimensional structure of the environment. It was previously shown that depth judgements are better when images comprise both light and dark features, rather than only light or only dark elements. Since Harris and Parker ( 374: 808-811, 1995) discovered the "mixed-polarity benefit," there has been limited evidence supporting their hypothesis that the benefit is due to separate bright and dark channels. Goncalves and Welchman ( 27: 1403-1412, 2017) observed that single- and mixed-polarity stereograms evoke different levels of positive and negative activity in a deep neural network trained on natural images to make depth judgements, which also showed the mixed-polarity benefit. Motivated by this discovery, we seek to test the potential for changes in the balance of excitation and inhibition that are produced by viewing these stimuli. In particular, we use magnetic resonance spectroscopy to measure Glx and GABA concentrations in the early visual cortex of adult humans during viewing of single- and mixed-polarity random-dot stereograms (RDS). We find that participants' Glx concentration is significantly higher, whereas GABA concentration is significantly lower, when mixed-polarity RDS are viewed than when single-polarity RDS are viewed. These results indicate that excitation and inhibition facilitate processing of single- and mixed-polarity stereograms in the early visual cortex to different extents, consistent with recent theoretical work (Goncalves NR, Welchman AE. 27: 1403-1412, 2017). Depth judgements are better when images comprise both light and dark features, rather than only light or only dark elements. Using magnetic resonance spectroscopy, we show that adult human participants' Glx concentration is significantly higher whereas GABA concentration is significantly lower in the early visual cortex when participants view mixed-polarity random-dot stereograms (RDS) compared with single-polarity RDS. These results indicate that excitation and inhibition facilitate processing of single- and mixed-polarity stereograms in the early visual cortex to different extents.

摘要

左右视网膜上投射的图像之间的偏移(双目视差)为环境的三维结构提供了一个强有力的线索。以前的研究表明,当图像包含亮暗特征时,深度判断会更好,而不仅仅是亮或暗元素。自 Harris 和 Parker(374:808-811, 1995)发现“混合极性优势”以来,虽然有一些证据支持他们的假设,即这种优势是由于独立的亮暗通道,但这种证据是有限的。Goncalves 和 Welchman(27:1403-1412, 2017)观察到,单极和混合极性立体图在一个基于自然图像进行深度判断的深度神经网络中引起不同水平的正、负活动,这也显示出了混合极性优势。受这一发现的启发,我们试图测试观看这些刺激产生的兴奋和抑制平衡变化的潜力。具体来说,我们使用磁共振波谱法测量成年人在观看单极和混合极性随机点立体图(RDS)时早期视觉皮层中的 Glx 和 GABA 浓度。我们发现,与观看单极 RDS 相比,当观看混合极性 RDS 时,参与者的 Glx 浓度显著升高,而 GABA 浓度显著降低。这些结果表明,兴奋和抑制在早期视觉皮层中以不同的程度促进单极和混合极性立体图的处理,这与最近的理论工作(Goncalves NR,Welchman AE. 27:1403-1412, 2017)一致。当图像包含亮暗特征时,深度判断会更好,而不仅仅是亮或暗元素。使用磁共振波谱法,我们显示与单极 RDS 相比,当参与者观看混合极性随机点立体图(RDS)时,成年人参与者的 Glx 浓度在早期视觉皮层中显著升高,而 GABA 浓度显著降低。这些结果表明,兴奋和抑制在早期视觉皮层中以不同的程度促进单极和混合极性立体图的处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/931c/6734395/76408730f6f1/z9k0081951680001.jpg

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