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三维运动信号的非彩色和彩色提取之间的非对称性。

Asymmetries between achromatic and chromatic extraction of 3D motion signals.

机构信息

Department of Psychology, University of York, YO10 5DD York, United Kingdom;

York Neuroimaging Centre, University of York, YO10 5DD York, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2019 Jul 2;116(27):13631-13640. doi: 10.1073/pnas.1817202116. Epub 2019 Jun 17.

Abstract

Motion in depth (MID) can be cued by high-resolution changes in binocular disparity over time (CD), and low-resolution interocular velocity differences (IOVD). Computational differences between these two mechanisms suggest that they may be implemented in visual pathways with different spatial and temporal resolutions. Here, we used fMRI to examine how achromatic and S-cone signals contribute to human MID perception. Both CD and IOVD stimuli evoked responses in a widespread network that included early visual areas, parts of the dorsal and ventral streams, and motion-selective area hMT+. Crucially, however, we measured an interaction between MID type and chromaticity. fMRI CD responses were largely driven by achromatic stimuli, but IOVD responses were better driven by isoluminant S-cone inputs. In our psychophysical experiments, when S-cone and achromatic stimuli were matched for perceived contrast, participants were equally sensitive to the MID in achromatic and S-cone IOVD stimuli. In comparison, they were relatively insensitive to S-cone CD. These findings provide evidence that MID mechanisms asymmetrically draw on information in precortical pathways. An early opponent motion signal optimally conveyed by the S-cone pathway may provide a substantial contribution to the IOVD mechanism.

摘要

深度运动(MID)可以通过随时间变化的高分辨率双眼视差(CD)和低分辨率双眼间速度差(IOVD)来提示。这两种机制的计算差异表明,它们可能在具有不同空间和时间分辨率的视觉通路上实现。在这里,我们使用 fMRI 来研究非彩色和 S- cone 信号如何有助于人类 MID 感知。CD 和 IOVD 刺激都在一个广泛的网络中引起了反应,包括早期视觉区域、背侧和腹侧流的一部分以及运动选择性区域 hMT+。然而,至关重要的是,我们测量了 MID 类型和色度之间的相互作用。fMRI CD 反应主要由非彩色刺激驱动,但 IOVD 反应则更好地由等亮度 S- cone 输入驱动。在我们的心理物理实验中,当 S- cone 和非彩色刺激在感知对比度上相匹配时,参与者对非彩色和 S- cone IOVD 刺激的 MID 同样敏感。相比之下,他们对 S- cone CD 相对不敏感。这些发现为 MID 机制不对称地利用皮质前通路中的信息提供了证据。由 S- cone 通路最佳传递的早期拮抗运动信号可能对 IOVD 机制做出了重大贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01a4/6612918/d2d0b8272341/pnas.1817202116fig01.jpg

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