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在 hMT 视觉区域中,对连贯和非连贯运动视觉表面的神经适应存在不同层次的证据。

Evidence for distinct levels of neural adaptation to both coherent and incoherently moving visual surfaces in visual area hMT.

机构信息

Coimbra Institute for Biomedical Imaging and Translational Research (CIBIT), University of Coimbra, Portugal; Institute of Nuclear Sciences Applied to Health (ICNAS), University of Coimbra, Portugal; Institute for Biomedical Imaging and Life Sciences (CNC.IBILI), Faculty of Medicine, University of Coimbra, Portugal.

Coimbra Institute for Biomedical Imaging and Translational Research (CIBIT), University of Coimbra, Portugal; Institute of Nuclear Sciences Applied to Health (ICNAS), University of Coimbra, Portugal; Institute for Biomedical Imaging and Life Sciences (CNC.IBILI), Faculty of Medicine, University of Coimbra, Portugal; ICNAS - Produção, University of Coimbra, Portugal.

出版信息

Neuroimage. 2018 Oct 1;179:540-547. doi: 10.1016/j.neuroimage.2018.06.075. Epub 2018 Jun 30.

Abstract

Visual adaptation describes the processes by which the visual system alters its operating properties in response to changes in the environment. It is one of the mechanisms controlling visual perceptual bistability - when two perceptual solutions are available - by controlling the duration of each percept. Moving plaids are an example of such ambiguity. They can be perceived as two surfaces sliding incoherently over each other or as a single coherent surface. Here, we investigated, using fMRI, whether activity in the human motion complex (hMT+), a region tightly related to the perceptual integration of visual motion, is modulated by distinct forms of visual adaptation to coherent or incoherent perception of moving plaids. Our hypothesis is that exposure to global coherent or incoherent moving stimuli leads to different levels of measurable adaptation, reflected in hMT+ activity. We found that the strength of the measured visual adaptation effect depended on whether subjects integrated (coherent percept) or segregated (incoherent percept) surface motion signals. Visual motion adaptation was significant both for coherent motion and globally incoherent surface motion. Although not as strong as to the coherent percept, visual adaptation due to the incoherent percept also affects hMT+. This shows that adaptation can contribute to regulate percept duration during visual bistability, with distinct weights, depending on the type of percept. Our findings suggest a link between bistability and adaptation mechanisms, both due to coherent and incoherent motion percepts, but in an asymmetric manner. These asymmetric adaptation weights have strong implications in models of perceptual decision and may explain asymmetry of perceptual interpretation periods.

摘要

视觉适应描述了视觉系统如何根据环境变化改变其操作特性。它是控制视觉感知双稳态的机制之一——当有两种感知解决方案时——通过控制每个感知的持续时间。运动格子布就是这种模糊性的一个例子。它们可以被感知为两个表面在彼此之上不协调地滑动,也可以被感知为单个连贯的表面。在这里,我们使用 fMRI 研究了人类运动复合体(hMT+)的活动是否受到对运动格子布的连贯或不连贯感知的不同形式的视觉适应的调节,hMT+是与视觉运动的感知整合密切相关的区域。我们的假设是,暴露于全局连贯或不连贯的运动刺激会导致可测量的适应水平不同,这反映在 hMT+的活动中。我们发现,所测量的视觉适应效果的强度取决于受试者是否整合(连贯感知)或分离(不连贯感知)表面运动信号。视觉运动适应在连贯运动和全局不连贯的表面运动中都很显著。尽管不如连贯感知强烈,但由于不连贯感知而产生的视觉适应也会影响 hMT+。这表明适应可以有助于调节视觉双稳态期间的感知持续时间,其权重取决于感知类型。我们的发现表明双稳态和适应机制之间存在联系,这两种机制都归因于连贯和不连贯的运动感知,但方式不对称。这些不对称的适应权重对感知决策模型具有重要意义,并可能解释感知解释期的不对称性。

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